spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Romisch, K.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Romisch, K.
Biederer, T., Volkwein C. and Sommer, T (1996). Degradation of subunits of the Sec61p complex, an integral component of the ER membrane, by the ubiquitin-proteasome pathway. EMBO J 15, 2069-2076.[Medline]

Biederer, T., Volkwein, C. and Sommer, T (1997). Role of Cue1p in ubiquitination and degradation at the ER surface. Science 278, 1806-1809.[Abstract/Free Full Text]

Bordallo, J., Plemper, R. K., Finger, A. and Wolf, D. H (1998). Der3p/Hrd1p is required for endoplasmic reticulum-associated degradation of misfolded lumenal and integral membrane proteins. Mol. Biol. Cell 9, 209-222.[Abstract/Free Full Text]

Brodsky, J. L., Werner, E. D., Dubas, M. E., Goeckeler, J. L., Kruse, K. B.and McCracken, A. A (1999). The requirement for molecular chaperones during endoplasmic reticulum-associated protein degradation demonstrates that protein export and import are mechanistically distinct. J. Biol. Chem 274, 3453-3460.[Abstract/Free Full Text]

Corsi, A. K. and Schekman, R (1997). The lumenal domain of Sec63p stimulates the ATPase activity of BiP and mediates BiP recruitment to the translocon in Saccharomyces cerevisiae. J. Cell Biol 137, 1483-1493.[Abstract/Free Full Text]

Dafforn, T. R., Mahadeva, R., Elliott, P. R., Sivasothy, P. and Lomas, D. A (1999). A kinetic mechanism for the polymerization of alpha1-antitrypsin. J. Biol. Chem 274, 9548-9555.[Abstract/Free Full Text]

Deshaies, R. J., Sanders, S. L., Feldheim, D. A. and Schekman, R (1991). Assembly of yeast Sec proteins involved in translocation into the endoplasmic reticulum into a membrane-bound multisubunit complex. Nature 349, 806-808.[Medline]

deVirgilio, M., Weninger, H. and Ivessa, N. E (1998). Ubiquitination is required for the retro-translocation of a short-lived luminal endoplasmic reticulum glycoprotein to the cytosol for degradation by the proteasome. J. Biol. Chem 273, 9734-9743.[Abstract/Free Full Text]

Do, H., Falcone, D., Lin, J., Andrews, D. W. and Johnson, A. E (1996). The cotranslational integration of membrane proteins into the phospholipid bilayer is a multistep process. Cell 85, 369-378.[Medline]

Enenkel, C., Lehmann, A. and Kloetzel, P. M (1998). Subcellular distribution of proteasomes implicates a major location of protein degradation in the nuclear envelope-ER network in yeast. EMBO J 17, 6144-6154.[Medline]

Esnault, Y., Feldheim, D., Blondel, M. O., Schekman, R. and Kepes, F (1994). SSS1 encodes a stabilizing component of the Sec61 subcomplex of the yeast protein translocation apparatus. J. Biol. Chem 269, 27478-27485.[Abstract/Free Full Text]

Feldheim, D. and Schekman, R (1994). Sec72p contributes to the selective recognition of signal peptides by the secretory polypeptide translocation complex. J. Cell Biol 126, 935-943.[Abstract/Free Full Text]

Finke, K., Plath, K., Panzner, S., Prehn, S., Rapoport, T. A., Hartmann, E. and Sommer, T (1996). A second trimeric complex containing homologs of the Sec61p complex functions in protein transport across the ER membrane of S. cerevisiae. EMBO J 15, 1482-1494.[Medline]

Gruss, O. J., Feick, P., Frank, R. and Dobberstein, B (1999). Phosphorylation of components of the ER translocation site. Eur. J. Biochem 260, 785-793.[Medline]

Hamman, B. D., Hendershot, L. M. and A. E. Johnson (1998). BiP maintains the permeability barrier of the ER membrane by sealing the lumenal end of the translocon pore before and early in translocation. Cell 92, 747-758.[Medline]

Hammond C. and Helenius A (1995). Quality control in the secretory pathway. Curr. Opin. Cell Biol 7, 523-529.[Medline]

Hampton, R. Y., Gardner, R. G. and Rine, J (1996). Role of 26S proteasome and HRD genes in the degradation of 3-hydroxy-3-methylglutaryl-CoA reductase, an integral endoplasmic reticulum membrane protein. Mol. Biol. Cell 7, 2029-2044.[Abstract]

Hanein, D., Matlack, K. E. S., Jungnickel, B., Plath, K., Kalies, K.-U., Miller, K. R., Rapoport, T. A. and Akey, C. W (1996). Oligomeric rings of the Sec61p complex induced by ligands required for protein translocation. Cell 87, 721-732.[Medline]

Hiller, M. M., Finger, A., Schweiger, M. and Wolf, D (1996). ER degradation of a misfolded luminal protein by the cytosolic ubiquitin-proteasome pathway. Science 273, 1725-1728.[Abstract/Free Full Text]

Holkeri, H. Paunola, E. Jamsa, E. and Makarow, M (1998). Dissection of the translocation and chaperoning functions of yeast BiP/Kar2p in vivo. J. Cell Sci 111, 749-757.[Abstract]

Holst, B., Bruun, A. W., Kielland-Brandt, M. C. and Winther, J. R (1996). Competition between folding and glycosylation in the endoplasmic reticulum. EMBO J 15, 3538-3546.[Medline]

Huppa, J. B. and Ploegh, H. L (1997). The alpha chain of the T cell antigen receptor is degraded in the cytosol. Immunity 7, 113-122.[Medline]

Imamura, T., Haruta, T., Takata, Y., Usui, I., Iwata, M., Ishihara, H., Ishiki, M,, Ishibashi, O., Ueno, E., Sasaoka, T. and Kobayashi, M (1998). Involvement of heat shock protein 90 in the degradation of mutant insulin receptors by the proteasome. J. Biol. Chem 273, 11183-11188.[Abstract/Free Full Text]

Jakob, C. A., Burda, P., Roth, J. and Aebi, M (1998). Degradation of misfolded endoplasmic reticulum glycoproteins in Saccharomyces cerevisiae is determined by a specific oligosaccharide structure. J. Cell Biol 142, 1223-1233.[Abstract/Free Full Text]

Jensen T. J., Loo M. A., Pind, S., Williams, D. B., Goldberg, A. L. and Riordan, J. R (1995). Multiple proteolytic systems, including the proteasome, contribute to CFTR processing. Cell 83, 129-135.[Medline]

Jungnickel, B. and Rapoport, T. A (1995). A posttargeting signal sequence recognition event in the endoplasmic reticulum membrane. Cell 82, 261-270.[Medline]

Kalies, K. U., Rapoport, T. A. and Hartmann, E (1998). The beta subunit of the Sec61 complex facilitates cotranslational protein transport and interacts with the signal peptidase during translocation. J. Cell Biol 41, 887-894.

Klausner R. D. and Sitia R (1990). Protein degradation in the endoplasmic reticulum. Cell 62, 611-614.[Medline]

Knop, M., Finger, A., Braun, T., Hellmuth, K. and Wolf, D. H (1996). Der1, a novel protein specifically required for endoplasmic reticulum degradation in yeast. EMBO J 15, 753-763.[Medline]

Knop, M., Hauser, N. and Wolf, D. H (1996). N-Glycosylation affects endoplasmic reticulum degradation of a mutated derivative of carboxypeptidase yscY in yeast. Yeast 12, 1229-1238.[Medline]

Kowalski, J. M., Parekh, R. N., Mao, J. and Wittrup, K. D (1998). Protein folding stability can determine the efficiency of escape from endoplasmic reticulum quality control. J. Biol. Chem 273, 19453-19458.[Abstract/Free Full Text]

Loo, M. A., Jensen, T. J., Cui, L., Hou, Y., Chang, X. B. and Riordan, J. R (1998). Perturbation of Hsp90 interaction with nascent CFTR prevents its maturation and accelerates its degradation by the proteasome. EMBO J 17, 6879-6887.[Medline]

Lyko, F., Martoglio, B., Jungnickel, B., Rapoport, T. A. and Dobberstein, B (1995). Signal sequence processing in rough microsomes. J. Biol. Chem 270, 19873-19878.[Abstract/Free Full Text]

Lyman, S. K. and Schekman, P (1997). Binding of secretory precursor polypeptides to a translocon subcomplex is regulated by BiP. Cell 88, 85-96.[Medline]

Matlack, K. E., Mothes, W. and Rapoport, T. A (1998). Protein translocation: tunnel vision. Cell 92, 381-390.[Medline]

Matlack, K. E., Misselwitz, B., Plath, K. and Rapoport, T. A (1999). BiP acts as a molecular ratchet during posttranslational transport of prepro-alpha factor across the ER membrane. Cell 97, 553-564.[Medline]

Mayer, T. U., Braun, T. and Jentsch, S (1998). Role of the proteasome in membrane extraction of a short-lived ER-transmembrane protein. EMBO J 17, 3251-3257.[Medline]

McCracken, A. A. and Brodsky, J. L (1996). Assembly of ER-associated degradation in vitro: dependence on cytosol, calnexin and ATP. J. Cell Biol 132, 291-298.[Abstract/Free Full Text]

Moriyama, T., Sather, S. K., McGee, T. P. and Simoni, R. D (1998). Degradation of HMG-CoA reductase in vitro. Cleavage in the membrane domain by a membrane-bound cysteine protease. J. Biol. Chem 273, 22037-22043.[Abstract/Free Full Text]

Panzner, S., Dreier, L., Hartmann, E., Kostka, S. and Rapoport, T. A (1995). Posttranslational protein transport in yeast reconstituted with a purified complex of Sec proteins and Kar2p. Cell 81, 561-570.[Medline]

Pilon, M., Schekman, R. and R\232misch, K (1997). Sec61p mediates export of a misfolded secretory protein from the endoplasmic reticulum to the cytosol for degradation. EMBO J 16, 4540-4548.[Medline]

Pilon, M., R\232misch, K., Quach, D. and Schekman, R (1998). Sec61p serves multiple roles in secretory precursor binding and translocation into the endoplasmic reticulum membrane. Mol. Biol. Cell 9, 3455-3473.[Abstract/Free Full Text]

Plath, K., Mothes, W., Wilkinson, B. M., Stirling, C. J. and Rapoport, T. A (1998). Signal sequence recognition in posttranslational protein transport across the yeast ER membrane. Cell 94, 795-807.[Medline]

Plemper, R. K., Bohmler, S., Bordallo, J., Sommer, T. and Wolf, D. H (1997). Mutant analysis links the translocon and BiP to retrograde protein transport for ER degradation. Nature 388, 891-895.[Medline]

Plemper, R. K., Egner, R., Kuchler, K. and Wolf, D. H (1998). Endoplasmic reticulum degradation of a mutated ATP-binding cassette transporter Pdr5 proceeds in a concerted action of Sec61 and the proteasome. J. Biol. Chem 273, 32848-32856.[Abstract/Free Full Text]

Plemper, R. K., Deak, P. M., Otto, R. T. and Wolf, D. H (1999). Re-entering the translocon from the lumenal side of the endoplasmic reticulum. Studies on mutated carboxypeptidase yscY species. FEBS Lett 443, 241-245.[Medline]

Riezman, H (1997). The ins and outs of protein translocation. Science 278, 1228-1229.[Free Full Text]

Roberts, B. J (1997). Evidence of proteasome-mediated cytochrome P-450 degradation. J. Biol. Chem 272, 9771-9778.[Abstract/Free Full Text]

Sanders, S. L., Whitfield, K. M., Vogel, J. P., Rose, M. D. and Schekman, R (1992). Sec61p and BiP directly facilitate polypeptide translocation into the ER. Cell 69, 353-365.[Medline]

Suzuki, T., Park, H., Kitajima, K. and Lennarz, W. J (1998). Peptides glycosylated in the endoplasmic reticulum of yeast are subsequently deglycosylated by a soluble peptide: N-glycanase activity. J. Biol. Chem 273, 21526-21530.[Abstract/Free Full Text]

Tatu, U. and Helenius, A (1997). Interactions between newly synthesized glycoproteins, calnexin and a network of resident chaperones in the endoplasmic reticulum. J. Cell Biol 136, 555-565.[Abstract/Free Full Text]

Toikkanen, J., Gatti, E., Takei, K., Saloheimo, M., Olkkonen, V. M., Soderlund, H., De Camilli, P. and Keranen, S (1996). Yeast proteintranslocation complex: isolation of two genes SEB1 and SEB2 encoding proteins homologous to the Sec61 beta subunit. Yeast 12, 425-438.[Medline]

Tortorella, D., Story, C. M., Huppa, J. B., Wiertz, E. J. H. J., Jones, T. R. and Ploegh, H. L (1998). Dislocation of type I membrane proteins from the ER to the cytosol is sensitive to changes in redox potential. J. Cell Biol 142, 365-376.[Abstract/Free Full Text]

Valetti, C., Grossi, C. E., Milstein, C. and Sitia, R (1991). Russell bodies: a general response of secretory cells to synthesis of a mutant immunoglobulin which can neither exit from, nor be degraded in, the endoplasmic reticulum. J. Cell Biol 115, 983-994.[Abstract/Free Full Text]

Ward C. L., Omura, S., Kopito, R. R (1995). Degradation of CFTR by the ubiquitin-proteasome pathway. Cell 83, 121-127.[Medline]

Werner, E. D., Brodsky, J. L. and McCracken, A. A (1996). Proteasome-dependent endoplasmic reticulum-associated protein degradation: An unconventional route to a familiar fate. Proc. Nat. Acad. Sci. USA 93, 13797-13801.[Abstract/Free Full Text]

Wiertz, E. J., Jones, T. R., Sun, L., Bogyo, M., Geuze, H. J. and Ploegh, H. L (1996). The human cytomegalovirus US11 gene product dislocates MHC class I heavy chains from the endoplasmic reticulum to the cytosol. Cell 84, 769-779.[Medline]

Wiertz, E. J. H. J., Tortorella, D., Bogyo, M., Yu, J., Mothes, W., Jones, T. R., Rapoport, T. A. and Ploegh, H. L (1996). Sec61-mediated transfer of a membrane protein from the endoplasmic reticulum to the proteasome for destruction. Nature 384, 432-438.[Medline]

Wilkinson, B. M., Critchley, A. J. and Stirling, C. J (1996). Determination of the transmembrane topology of yeast Sec61p, an essential component of the endoplasmic reticulum translocation complex. J. Biol. Chem 271, 25590-25597.[Abstract/Free Full Text]

Wilkinson, B. M., Esnault, Y., Craven, R. A., Skiba, F., Fieschi, J., Kepes, F. and Stirling, C. J (1997). Molecular architecture of the ER translocase probed by chemical crosslinking of Sss1p to complementary fragments of Sec61p. EMBO J 15, 4549-4559.

Xiong, X., Chong, E. and Skach, W. R (1999). Evidence that endoplasmic reticulum (ER)-associated degradation of cystic fibrosis transmembrane conductance regulator is linked to retrograde translocation from the ER membrane. J. Biol. Chem 274, 2616-2624.[Abstract/Free Full Text]

Yang, M., Omura, S., Bonifacino, J. S. and Weissman, A. M (1998). Novel aspects of degradation of T cell receptor subunits from the endoplasmic reticulum (ER) in T cells: importance of oligosaccharide processing, ubiquitination and proteasome-dependent removal from ER membranes. J. Exp. Med 187, 835-846.[Abstract/Free Full Text]

Yang, Y., Fruh, K., Ahn, K. and Peterson, P. A (1995). In vivo assembly of the proteasomal complexes, implications for antigen processing. J. Biol. Chem 270, 27687-27694.[Abstract/Free Full Text]

Young, J., Kane, P. L., Exley, M. and Wileman, T (1993). Regulation of selective protein degradation in the endoplasmic reticulum by redox potential. J. Biol. Chem 268, 19810-19818.[Abstract/Free Full Text]




This article has been cited by other articles:


Home page
Endocr. Rev.Home page
D. L. Eizirik, A. K. Cardozo, and M. Cnop
The Role for Endoplasmic Reticulum Stress in Diabetes Mellitus
Endocr. Rev., February 1, 2008; 29(1): 42 - 61.
[Abstract] [Full Text] [PDF]


Home page
Infect. Immun.Home page
F. Navarro-Garcia, A. Canizalez-Roman, K. E. Burlingame, K. Teter, and J. E. Vidal
Pet, a Non-AB Toxin, Is Transported and Translocated into Epithelial Cells by a Retrograde Trafficking Pathway
Infect. Immun., May 1, 2007; 75(5): 2101 - 2109.
[Abstract] [Full Text] [PDF]


Home page
J. Immunol.Home page
J. J. Ladasky, S. Boyle, M. Seth, H. Li, T. Pentcheva, F. Abe, S. J. Steinberg, and M. Edidin
Bap31 Enhances the Endoplasmic Reticulum Export and Quality Control of Human Class I MHC Molecules
J. Immunol., November 1, 2006; 177(9): 6172 - 6181.
[Abstract] [Full Text] [PDF]


Home page
ScienceHome page
P. Dolezal, V. Likic, J. Tachezy, and T. Lithgow
Evolution of the molecular machines for protein import into mitochondria.
Science, July 21, 2006; 313(5785): 314 - 318.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
S. Katiyar, S. Joshi, and W. J. Lennarz
The Retrotranslocation Protein Derlin-1 Binds Peptide:N-Glycanase to the Endoplasmic Reticulum
Mol. Biol. Cell, October 1, 2005; 16(10): 4584 - 4594.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
E. W. Abrams and D. J. Andrew
CrebA regulates secretory activity in the Drosophila salivary gland and epidermis
Development, June 15, 2005; 132(12): 2743 - 2758.
[Abstract] [Full Text] [PDF]


Home page
J BiochemHome page
S.-i. Nishikawa, J. L. Brodsky, and K. Nakatsukasa
Roles of Molecular Chaperones in Endoplasmic Reticulum (ER) Quality Control and ER-Associated Degradation (ERAD)
J. Biochem., May 1, 2005; 137(5): 551 - 555.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
A. Kato, N. Rouach, R. A. Nicoll, and D. S. Bredt
Activity-dependent NMDA receptor degradation mediated by retrotranslocation and ubiquitination
PNAS, April 12, 2005; 102(15): 5600 - 5605.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
R. T. Youker, P. Walsh, T. Beilharz, T. Lithgow, and J. L. Brodsky
Distinct Roles for the Hsp40 and Hsp90 Molecular Chaperones during Cystic Fibrosis Transmembrane Conductance Regulator Degradation in Yeast
Mol. Biol. Cell, November 1, 2004; 15(11): 4787 - 4797.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
Y. Hu, X. Fang, S. M. Dunham, C. Prada, E. K. Stachowiak, and M. K. Stachowiak
90-kDa Ribosomal S6 Kinase Is a Direct Target for the Nuclear Fibroblast Growth Factor Receptor 1 (FGFR1): ROLE IN FGFR1 SIGNALING
J. Biol. Chem., July 9, 2004; 279(28): 29325 - 29335.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Physiol. Renal Physiol.Home page
R. M. Sandoval and B. A. Molitoris
Gentamicin traffics retrograde through the secretory pathway and is released in the cytosol via the endoplasmic reticulum
Am J Physiol Renal Physiol, April 1, 2004; 286(4): F617 - F624.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
M. Kabani, S. S. Kelley, M. W. Morrow, D. L. Montgomery, R. Sivendran, M. D. Rose, L. M. Gierasch, and J. L. Brodsky
Dependence of Endoplasmic Reticulum-associated Degradation on the Peptide Binding Domain and Concentration of BiP
Mol. Biol. Cell, August 1, 2003; 14(8): 3437 - 3448.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
K. Romisch, N. Collie, N. Soto, J. Logue, M. Lindsay, W. Scheper, and C.-H. C. Cheng
Protein translocation across the endoplasmic reticulum membrane in cold-adapted organisms
J. Cell Sci., July 15, 2003; 116(14): 2875 - 2883.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
E. A. Palmer, K. B. Kruse, S. W. Fewell, S. M. Buchanan, J. L. Brodsky, and A. A. McCracken
Differential requirements of novel A1PiZ degradation deficient (ADD) genes in ER-associated protein degradation
J. Cell Sci., June 1, 2003; 116(11): 2361 - 2373.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
B. M. Abell, M. Jung, J. D. Oliver, B. C. Knight, J. Tyedmers, R. Zimmermann, and S. High
Tail-anchored and Signal-anchored Proteins Utilize Overlapping Pathways during Membrane Insertion
J. Biol. Chem., February 14, 2003; 278(8): 5669 - 5678.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
A. Roy and W. F. Wonderlin
The Permeability of the Endoplasmic Reticulum Is Dynamically Coupled to Protein Synthesis
J. Biol. Chem., February 7, 2003; 278(7): 4397 - 4403.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Yabal, S. Brambillasca, P. Soffientini, E. Pedrazzini, N. Borgese, and M. Makarow
Translocation of the C Terminus of a Tail-anchored Protein across the Endoplasmic Reticulum Membrane in Yeast Mutants Defective in Signal Peptide-driven Translocation
J. Biol. Chem., January 24, 2003; 278(5): 3489 - 3496.
[Abstract] [Full Text] [PDF]


Home page
Physiol. Rev.Home page
S. Olsnes, O. Klingenberg, and A. Wiedlocha
Transport of Exogenous Growth Factors and Cytokines to the Cytosol and to the Nucleus
Physiol Rev, January 1, 2003; 83(1): 163 - 182.
[Abstract] [Full Text] [PDF]


Home page
GlycobiologyHome page
T. Suzuki and W. J. Lennarz
Glycopeptide export from the endoplasmic reticulum into cytosol is mediated by a mechanism distinct from that for export of misfolded glycoprotein
Glycobiology, December 1, 2002; 12(12): 803 - 811.
[Abstract] [Full Text] [PDF]


Home page
cellbioedHome page
E. Vallen
Analysis of Protein Localization and Secretory Pathway Function Using the Yeast Saccharomyces cerevisiae
CBE Life Sci Educ, December 1, 2002; 1(4): 173 - 192.
[Abstract] [Full Text] [PDF]


Home page
Infect. Immun.Home page
K. Teter, R. L. Allyn, M. G. Jobling, and R. K. Holmes
Transfer of the Cholera Toxin A1 Polypeptide from the Endoplasmic Reticulum to the Cytosol Is a Rapid Process Facilitated by the Endoplasmic Reticulum-Associated Degradation Pathway
Infect. Immun., November 1, 2002; 70(11): 6166 - 6171.
[Abstract] [Full Text] [PDF]


Home page
Infect. Immun.Home page
K. Teter and R. K. Holmes
Inhibition of Endoplasmic Reticulum-Associated Degradation in CHO Cells Resistant to Cholera Toxin, Pseudomonas aeruginosa Exotoxin A, and Ricin
Infect. Immun., November 1, 2002; 70(11): 6172 - 6179.
[Abstract] [Full Text] [PDF]


Home page
J. Dent. Res.Home page
K. Hiratsuka, Y. Kamino, T. Nagata, Y. Takahashi, S. Asai, K. Ishikawa, and Y. Abiko
Microarray Analysis of Gene Expression Changes in Aging in Mouse Submandibular Gland
J. Dent. Res., October 1, 2002; 81(10): 679 - 682.
[Abstract] [Full Text] [PDF]


Home page
FASEB J.Home page
T. SUZUKI, H. PARK, and W. J. LENNARZ
Cytoplasmic peptide:N-glycanase (PNGase) in eukaryotic cells: occurrence, primary structure, and potential functions
FASEB J, May 1, 2002; 16(7): 635 - 641.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
M. Hoque, T. M. Young, C.-G. Lee, G. Serrero, M. B. Mathews, and T. Pe'ery
The Growth Factor Granulin Interacts with Cyclin T1 and Modulates P-TEFb-Dependent Transcription
Mol. Cell. Biol., March 1, 2002; 23(5): 1688 - 1702.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
H. Park, T. Suzuki, and W. J. Lennarz
Identification of proteins that interact with mammalian peptide:N-glycanase and implicate this hydrolase in the proteasome-dependent pathway for protein degradation
PNAS, September 13, 2001; (2001) 201393498.
[Abstract] [Full Text] [PDF]


Home page
J. Virol.Home page
J. M. Johnson, C. Nicot, J. Fullen, V. Ciminale, L. Casareto, J. C. Mulloy, S. Jacobson, and G. Franchini
Free Major Histocompatibility Complex Class I Heavy Chain Is Preferentially Targeted for Degradation by Human T-Cell Leukemia/Lymphotropic Virus Type 1 p12I Protein
J. Virol., July 1, 2001; 75(13): 6086 - 6094.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
S.-i. Nishikawa, S. W. Fewell, Y. Kato, J. L. Brodsky, and T. Endo
Molecular Chaperones in the Yeast Endoplasmic Reticulum Maintain the Solubility of Proteins for Retrotranslocation and Degradation
J. Cell Biol., May 29, 2001; 153(5): 1061 - 1070.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
Y. Zhang, G. Nijbroek, M. L. Sullivan, A. A. McCracken, S. C. Watkins, S. Michaelis, and J. L. Brodsky
Hsp70 Molecular Chaperone Facilitates Endoplasmic Reticulum-associated Protein Degradation of Cystic Fibrosis Transmembrane Conductance Regulator in Yeast
Mol. Biol. Cell, May 1, 2001; 12(5): 1303 - 1314.
[Abstract] [Full Text]


Home page
Mol. Biol. CellHome page
C. Harty, S. Strahl, and K. Römisch
O-Mannosylation Protects Mutant Alpha-Factor Precursor from Endoplasmic Reticulum-associated Degradation
Mol. Biol. Cell, April 1, 2001; 12(4): 1093 - 1101.
[Abstract] [Full Text]


Home page
J. Cell Sci.Home page
J. Yewdell, U Schubert, and J. Bennink
At the crossroads of cell biology and immunology: DRiPs and other sources of peptide ligands for MHC class I molecules
J. Cell Sci., January 3, 2001; 114(5): 845 - 851.
[Abstract] [PDF]


Home page
J. Cell Biol.Home page
T. Suzuki, H. Park, N. M. Hollingsworth, R. Sternglanz, and W. J. Lennarz
PNG1, a Yeast Gene Encoding a Highly Conserved Peptide:N-glycanase
J. Cell Biol., May 29, 2000; 149(5): 1039 - 1052.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
K. Nakatsukasa, S.-i. Nishikawa, N. Hosokawa, K. Nagata, and T. Endo
Mnl1p, an alpha -Mannosidase-like Protein in Yeast Saccharomyces cerevisiae, Is Required for Endoplasmic Reticulum-associated Degradation of Glycoproteins
J. Biol. Chem., March 16, 2001; 276(12): 8635 - 8638.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
U. E. Petaja-Repo, M. Hogue, A. Laperriere, S. Bhalla, P. Walker, and M. Bouvier
Newly Synthesized Human delta Opioid Receptors Retained in the Endoplasmic Reticulum Are Retrotranslocated to the Cytosol, Deglycosylated, Ubiquitinated, and Degraded by the Proteasome
J. Biol. Chem., February 2, 2001; 276(6): 4416 - 4423.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
T. Suzuki, H. Park, M. A. Kwofie, and W. J. Lennarz
Rad23 Provides a Link between the Png1 Deglycosylating Enzyme and the 26 S Proteasome in Yeast
J. Biol. Chem., June 8, 2001; 276(24): 21601 - 21607.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
D. Heritage and W. F. Wonderlin
Translocon Pores in the Endoplasmic Reticulum Are Permeable to a Neutral, Polar Molecule
J. Biol. Chem., June 15, 2001; 276(25): 22655 - 22662.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
C. Fagioli, A. Mezghrani, and R. Sitia
Reduction of Interchain Disulfide Bonds Precedes the Dislocation of Ig-{micro} Chains from the Endoplasmic Reticulum to the Cytosol for Proteasomal Degradation
J. Biol. Chem., October 26, 2001; 276(44): 40962 - 40967.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
P. Gillece, M. Pilon, and K. Romisch
The protein translocation channel mediates glycopeptide export across the endoplasmic reticulum membrane
PNAS, April 25, 2000; 97(9): 4609 - 4614.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
H. Park, T. Suzuki, and W. J. Lennarz
Identification of proteins that interact with mammalian peptide:N-glycanase and implicate this hydrolase in the proteasome-dependent pathway for protein degradation
PNAS, September 25, 2001; 98(20): 11163 - 11168.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
N. G. Haigh and A. E. Johnson
A new role for BiP: closing the aqueous translocon pore during protein integration into the ER membrane
J. Cell Biol., January 21, 2002; 156(2): 261 - 270.
[Abstract] [Full Text] [PDF]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Romisch, K.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Romisch, K.