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 Zhang, Y.
Right arrow Articles by Broadie, K.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Zhang, Y.
Right arrow Articles by Broadie, K.
Astier, C., Raynaud, F., Lebart, M. C., Roustan, C. and Benyamin, Y (1998). Binding of a native titin fragment to actin is regulated by PIP2. FEBS Lett 429, 95-98.[Medline]

Ayme-Southgate, A., Vigoreaux, J., Benian, G. and Pardue, M. L (1991). Drosophila has a twitchin/titin-related gene that appears to encode projectin. Proc. Nat. Acad. Sci. USA 88, 7973-7977.[Abstract/Free Full Text]

Ayme-Southgate, A., Southgate, R., Saide, J., Benian, G. M. and Pardue, M. L (1995). Both synchronous and asynchronous muscle isoforms of projectin (the Drosophila bent locus product) contain functional kinase domains. J. Cell Biol 128, 393-403.[Abstract/Free Full Text]

Beall, C. J., Sepanski, M. A. and Fyrberg, E. A (1989). Genetic dissection of Drosophila myofibril formation: effects of actin and myosin heavy chain null alleles. Genes Dev 3, 131-140.[Abstract/Free Full Text]

Constantin, B., Imbert, N., Besse, C., Cognard, C. and Raymond, G (1995). Cultured rat skeletal muscle cells treated with cytochalasin exhibit normal dystrophin expression and intracellular free calcium control. Biol. Cell 85, 125-135.[Medline]

Cripps, R. M., Suggs, J. A. and Bernstein, S. I (1999). Assembly of thick filaments and myofibrils occurs in the absence of the myosin head. EMBO J 18, 1793-1804.[Medline]

Deak, P., Omar, M. M., Saunders, R. D., Pal, M., Komonyi, O., Szidonya, J., Maroy, P., Zhang, Y., Ashburner, M., Benos, P. et al. ( (1997). P-element insertion alleles of essential genes on the third chromosome of Drosophila melanogaster: correlation of physical and cytogenetic maps in chromosomal region 86E-87F. Genetics 147, 1697-1722.[Abstract]

Desai, C. J., Popova, E. and Zinn, K (1994). A Drosophila receptor tyrosine phosphatase expressed in the embryonic CNS and larval optic lobes is a member of the set of proteins bearing the \324HRP' carbohydrate epitope. J. Neurosci 14, 7272-7283.[Abstract]

Doberstein, S. K., Fetter, R. D., Mehta, A. Y. and Goodman, C. S (1997). Genetic analysis of myoblast fusion: blown fuse is required for progression beyond the prefusion complex. J. Cell Biol 136, 1249-1261.[Abstract/Free Full Text]

Fergestad, T. J., Davis, W. S. and Broadie, K. S (1999). The Stoned proteins regulate synaptic vesicle recycling in the presynaptic terminal. J. Neurosci 19, 5847-5860.[Abstract/Free Full Text]

Fulton, A. B. and Isaacs, W. B (1991). Titin, a huge, elastic sarcomeric protein with a probable role in morphogenesis. BioEssays 13, 157-161.[Medline]

Funatsu, T (1996). Elastic filaments in situ in striated muscle revealed by selective removal of thin filaments with plasma gelsolin. Adv. Biophys 33, 41-52.[Medline]

Furst, D. O., Osborn, M. and Weber, K (1989). Myogenesis in the mouse embryo: differential onset of expression of myogenic proteins and the involvement of titin in myofibril assembly. J. Cell Biol 109, 517-527.[Abstract/Free Full Text]

Fyrberg, E., Kelly, M., Ball, E., Fyrberg, C. and Reedy, M. C (1990). Molecular genetics of Drosophila alpha-actinin: mutant alleles disrupt Z disc integrity and muscle insertions. J. Cell Biol 110, 1999-2011.[Abstract/Free Full Text]

Gregorio, C. C., Trombitas, K., Centner, T., Kolmerer, B., Stier, G., Kunke, K., Suzuki, K., Obermayr, F., Herrmann, B., Granzier, H. et al. ( (1998). The NH2 terminus of titin spans the Z-disc: its interaction with a novel 19-kD ligand (T-cap) is required for sarcomeric integrity. J. Cell Biol 143, 1013-1027.[Abstract/Free Full Text]

Gregorio, C. C., Granzier, H., Sorimachi, H. and Labeit, S (1999). Muscle assembly: a titanic achievement?. Curr. Opin. Cell Biol 11, 18-25.[Medline]

Hakeda, S., Endo, S. and Saigo, K (2000). Requirements of kettin, a giant muscle protein highly conserved in overall structure in evolution, for normal muscle function, viability, and flight activity of Drosophila. J. Cell Biol 148, 101-114.[Abstract/Free Full Text]

Hayashi, T., Silver, R. B., Ip, W., Cayer, M. L. and Smith, D. S (1977). Actin-myosin interaction. Self-assembly into a bipolar \324contractile unit'. J. Mol. Biol 111, 159-171.[Medline]

Isaacs, W. B., Kim, I. S., Struve, A. and Fulton, A. B (1992). Association of titin and myosin heavy chain in developing skeletal muscle. Proc. Nat. Acad. Sci. USA 89, 7496-7500.[Abstract/Free Full Text]

Keller, T. C., III (1997). Molecular bungees. Nature 387, 233-235.[Medline]

Kiehart, D. P. and Feghali, R (1986). Cytoplasmic myosin from Drosophila melanogaster. J. Cell Biol 103, 1517-1525.[Abstract/Free Full Text]

Kolmerer, B., Clayton, J., Benes, V., Allen, T., Ferguson, C., Leonard, K., Weber, U., Knekt, M., Ansorge, W., Labeit, S. et al. ( (2000). Sequence and expression of the kettin gene in Drosophila melanogaster and Caenorhabditis elegans. J. Mol. Biol 296, 435-448.[Medline]

Labeit, S. and Kolmerer, B (1995). Titins: giant proteins in charge of muscle ultrastructure and elasticity. Science 270, 293-296.[Abstract/Free Full Text]

Lakey, A., Labeit, S., Gautel, M., Ferguson, C., Barlow, D. P., Leonard, K. and Bullard, B (1993). Kettin, a large modular protein in the Z-disc of insect muscles. EMBO J 12, 2863-2871.[Medline]

Lin, Z., Lu, M. H., Schultheiss, T., Choi, J., Holtzer, S., DiLullo, C., Fischman, D. A. and Holtzer, H (1994). Sequential appearance of muscle-specific proteins in myoblasts as a function of time after cell division: evidence for a conserved myoblast differentiation program in skeletal muscle. Cell Motil. Cytoskel 29, 1-19.[Medline]

Linke, W. A., Ivemeyer, M., Labeit, S., Hinssen, H., Ruegg, J. C. and Gautel, M (1997). Actin-titin interaction in cardiac myofibrils: probing a physiological role. Biophys. J 73, 905-919.[Abstract/Free Full Text]

Linke, W. A., Ivemeyer, M., Mundel, P., Stockmeier, M. R. and Kolmerer, B (1998). Nature of PEVK-titin elasticity in skeletal muscle. Proc. Nat. Acad. Sci. USA 95, 8052-8057.[Abstract/Free Full Text]

Machado, C., Sunkel, C. E. and Andrew, D. J (1998). Human autoantibodies reveal titin as a chromosomal protein. J. Cell Biol 141, 321-333.[Abstract/Free Full Text]

Maruyama, K (1976). Connectin, an elastic protein from myofibrils. J. Biochem. (Tokyo) 80, 405-407.[Abstract/Free Full Text]

Mayans, O., van der Ven, P. F., Wilm, M., Mues, A., Young, P., Furst, D. O., Wilmanns, M. and Gautel, M (1998). Structural basis for activation of the titin kinase domain during myofibrillogenesis. Nature 395, 863-869.[Medline]

Obermann, W. M., Gautel, M., Steiner, F., van der Ven, P. F., Weber, K. and Furst, D. O (1996). The structure of the sarcomeric M band: localization of defined domains of myomesin, M-protein, and the 250-kD carboxy-terminal region of titin by immunoelectron microscopy. J. Cell Biol 134, 1441-1453.[Abstract/Free Full Text]

Obermann, W. M., Gautel, M., Weber, K. and Furst, D. O (1997). Molecular structure of the sarcomeric M band: mapping of titin and myosin binding domains in myomesin and the identification of a potential regulatory phosphorylation site in myomesin. EMBO J 16, 211-220.[Medline]

Prokop, A., Landgraf, M., Rushton, E., Broadie, K. and Bate, M (1996). Presynaptic development at the Drosophila neuromuscular junction: assembly and localization of presynaptic active zones. Neuron 17, 617-626.[Medline]

Roulier, E. M., Fyrberg, C. and Fyrberg, E (1992). Perturbations of Drosophila alpha-actinin cause muscle paralysis, weakness, and atrophy but do not confer obvious nonmuscle phenotypes. J. Cell Biol 116, 911-922.[Abstract/Free Full Text]

Rushton, E., Drysdale, R., Abmayr, S. M., Michelson, A. M. and Bate, M (1995). Mutations in a novel gene, myoblast city, provide evidence in support of the founder cell hypothesis for Drosophila muscle development. Development 121, 1979-1988.[Abstract]

Saide, J. D., Chin-Bow, S., Hogan-Sheldon, J., Busquets-Turner, L., Vigoreaux, J. O., Valgeirsdottir, K. and Pardue, M. L (1989). Characterization of components of Z-bands in the fibrillar flight muscle of Drosophila melanogaster. J. Cell Biol 109, 2157-2167.[Abstract/Free Full Text]

Salzberg, A., Prokopenko, S. N., He, Y., Tsai, P., Pal, M., Maroy, P., Glover, D. M., Deak, P. and Bellen, H. J (1997). P-element insertion alleles of essential genes on the third chromosome of Drosophila melanogaster: mutations affecting embryonic PNS development. Genetics 147, 1723-1741.[Abstract]

Sliter, T. J., Henrich, V. C., Tucker, R. L. and Gilbert, L. I (1989). The genetics of the Dras3-Roughened-ecdysoneless chromosomal region (62B3-4 to 62D3-4) in Drosophila melanogaster: analysis of recessive lethal mutations. Genetics 123, 327-336.[Abstract/Free Full Text]

Sorimachi, H., Freiburg, A., Kolmerer, B., Ishiura, S., Stier, G., Gregorio, C. C., Labeit, D., Linke, W. A., Suzuki, K. and Labeit, S (1997). Tissue-specific expression and alpha-actinin binding properties of the Z-disc titin: implications for the nature of vertebrate Z-discs. J. Mol. Biol 270, 688-695.[Medline]

Trinick, J (1994). Titin and nebulin: protein rulers in muscle?. Trends Biochem. Sci 19, 405-409.[Medline]

Trombitas, K., Greaser, M., French, G. and Granzier, H (1998). PEVK extension of human soleus muscle titin revealed by immunolabeling with the anti-titin antibody 9D10. J. Struct. Biol 122, 188-196.[Medline]

Tskhovrebova, L., Trinick, J., Sleep, J. A. and Simmons, R. M (1997). Elasticity and unfolding of single molecules of the giant muscle protein titin. Nature 387, 308-312.[Medline]

Turnacioglu, K. K., Mittal, B., Dabiri, G. A., Sanger, J. M. and Sanger, J. W (1997). An N-terminal fragment of titin coupled to green fluorescent protein localizes to the Z-bands in living muscle cells: overexpression leads to myofibril disassembly. Mol. Biol. Cell 8, 705-717.[Abstract]

van der Ven, P. F. and Furst, D. O (1997). Assembly of titin, myomesin and M-protein into the sarcomeric M band in differentiating human skeletal muscle cells in vitro. Cell Struct. Funct 22, 163-171.[Medline]

van Straaten, M., Goulding, D., Kolmerer, B., Labeit, S., Clayton, J., Leonard, K. and Bullard, B (1999). Association of kettin with actin in the Z-disc of insect flight muscle. J. Mol. Biol 285, 1549-1562.[Medline]

Wang, K., McClure, J. and Tu, A (1979). Titin: major myofibrillar components of striated muscle. Proc. Nat. Acad. Sci. USA 76, 3698-3702.[Abstract/Free Full Text]

Wang, M., Champion, L. E., Biessmann, H. and Mason, J. M (1994). Mapping a mutator, mu2, which increases the frequency of terminal deletions in Drosophila melanogaster. Mol. Gen. Genet 245, 598-607.[Medline]




This article has been cited by other articles:


Home page
DevelopmentHome page
J. Bai, R. Binari, J.-Q. Ni, M. Vijayakanthan, H.-S. Li, and N. Perrimon
RNA interference screening in Drosophila primary cells for genes involved in muscle assembly and maintenance
Development, April 15, 2008; 135(8): 1439 - 1449.
[Abstract] [Full Text] [PDF]


Home page
J. Exp. Biol.Home page
A. Mery, O. Taghli-Lamallem, K. A. Clark, M. C. Beckerle, X. Wu, K. Ocorr, and R. Bodmer
The Drosophila muscle LIM protein, Mlp84B, is essential for cardiac function
J. Exp. Biol., January 1, 2008; 211(1): 15 - 23.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
B. E. Richardson, K. Beckett, S. J. Nowak, and M. K. Baylies
SCAR/WAVE and Arp2/3 are crucial for cytoskeletal remodeling at the site of myoblast fusion
Development, December 15, 2007; 134(24): 4357 - 4367.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
L. Fabian, X. Xia, D. V. Venkitaramani, K. M. Johansen, J. Johansen, D. J. Andrew, and A. Forer
Titin in insect spermatocyte spindle fibers associates with microtubules, actin, myosin and the matrix proteins skeletor, megator and chromator
J. Cell Sci., July 1, 2007; 120(13): 2190 - 2204.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
K. A. Clark, J. M. Bland, and M. C. Beckerle
The Drosophila muscle LIM protein, Mlp84B, cooperates with D-titin to maintain muscle structural integrity
J. Cell Sci., June 15, 2007; 120(12): 2066 - 2077.
[Abstract] [Full Text] [PDF]


Home page
Circ. Res.Home page
M. Seeley, W. Huang, Z. Chen, W. O. Wolff, X. Lin, and X. Xu
Depletion of Zebrafish Titin Reduces Cardiac Contractility by Disrupting the Assembly of Z-Discs and A-Bands
Circ. Res., February 2, 2007; 100(2): 238 - 245.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
K. Ono, R. Yu, K. Mohri, and S. Ono
Caenorhabditis elegans Kettin, a Large Immunoglobulin-like Repeat Protein, Binds to Filamentous Actin and Provides Mechanical Stability to the Contractile Apparatuses in Body Wall Muscle
Mol. Biol. Cell, June 1, 2006; 17(6): 2722 - 2734.
[Abstract] [Full Text] [PDF]


Home page
Physiol. Rev.Home page
S. L. Hooper and J. B. Thuma
Invertebrate Muscles: Muscle Specific Genes and Proteins
Physiol Rev, July 1, 2005; 85(3): 1001 - 1060.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
U. Nongthomba, S. Clark, M. Cummins, M. Ansari, M. Stark, and J. C. Sparrow
Troponin I is required for myofibrillogenesis and sarcomere formation in Drosophila flight muscle
J. Cell Sci., May 1, 2004; 117(9): 1795 - 1805.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
G. Miller, H. Musa, M. Gautel, and M. Peckham
A targeted deletion of the C-terminal end of titin, including the titin kinase domain, impairs myofibrillogenesis
J. Cell Sci., December 1, 2003; 116(23): 4811 - 4819.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
H. Liu, M. Mardahl-Dumesnil, S. T. Sweeney, C. J. O'Kane, and S. I. Bernstein
Drosophila paramyosin is important for myoblast fusion and essential for myofibril formation
J. Cell Biol., March 17, 2003; 160(6): 899 - 908.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
M. Kulke, C. Neagoe, B. Kolmerer, A. Minajeva, H. Hinssen, B. Bullard, and W. A. Linke
Kettin, a major source of myofibrillar stiffness in Drosophila indirect flight muscle
J. Cell Biol., September 3, 2001; 154(5): 1045 - 1058.
[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 Zhang, Y.
Right arrow Articles by Broadie, K.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Zhang, Y.
Right arrow Articles by Broadie, K.