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 Kobayashi, T.
Right arrow Articles by Hearing, V. J.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Kobayashi, T.
Right arrow Articles by Hearing, V. J.
Aroca, P., Garc\222a-Borron, J. C., Solano, F. and Lozano, J. A (1990). Regulation of distal mammalian melanogenesis. I. Partial purification and characterization of a DOPAchrome converting factor: DOPAchrome tautomerase. Biochim. Biophys. Acta 1035, 266-275.[Medline]

Aroca, P., Urabe, K., Kobayashi, T., Tsukamoto, K. and Hearing, V. J (1993). Melanin biosynthesis patterns following hormonal stimulation. J. Biol. Chem 268, 25650-25655.[Abstract/Free Full Text]

Barber, J. I., Townsend, D., Olds, D. P. and King, R. A (1984). DOPAchrome oxidoreductase: a new enzyme in the pigment pathway. J. Invest. Dermatol 83, 145-149.[Medline]

Barber, J. I., Townsend, D., Olds, D. P. and King, R. A (1985). Decreased DOPAchrome oxidoreductase activity in yellow mice. J. Hered 76, 59-60.[Abstract/Free Full Text]

Bennett, D. C., Cooper, P. J. and Hart, I. R (1987). A line of non-tumorigenic mouse melanocytes, syngeneic with the B16 melanoma and requiring a tumor promoter for growth. Int. J. Cancer 39, 414-418.[Medline]

Bultman, S. J., Michaud, E. J. and Woychik, R. P (1992). Molecular characterization of the mouse agouti locus. Cell 71, 1195-1204.[Medline]

Burchill, S. A., Thody, A. J. and Ito, S (1986). Melanocyte-stimulating hormone, tyrosinase activity and the regulation of eumelanogenesis and pheomelanogenesis in hair follicular melanocytes of the mouse. J. Endocrinol 109, 15-21.[Abstract]

Burchill, S. A., Virden, R. and Thody, A. J (1989). Regulation of tyrosinase synthesis and its processing in the hair follicular melanocytes of the mouse during eumelanogenesis and pheomelanogenesis. J. Invest. Dermatol 93, 236-240.[Medline]

Chiu, E., Lamoreux, M. L. and Orlow, S. J (1993). Postnatal ocular expression of tyrosinase and related proteins: disruption by the pink-eyed unstable (pun) mutation. Exp. Eye Res 57, 301-305.[Medline]

Conklin, B. R. and Bourne, H. R (1993). Mouse coat colour reconsidered. Nature 364, 110-.[Medline]

Del-Marmol, V., Ito, S., Jackson, I. J., Vachtenheim, J., Berr, P., Ghanem, G., Morandini, R., Wakamatsu, K. and Huez, G (1993). TRP-1 expression correlates with eumelanogenesis in human pigment cells in culture. FEBS Lett 327, 307-310.[Medline]

Duhl, D. M. J., Vrieling, H., Miller, K. A., Wolff, G. L. and Barsh, G. S (1994). Neomorphic agouti mutations in obese yellow mice. Nature Genet 8, 59-65.[Medline]

Duhl, D. M. J., Vrieling, H., Stevens, M. E., Saxon, P. J., Miller, M. W., Epstein, C. J. and Barsh, G. S (1994). Pleiotropic effects of the mouse lethal yellow (Ay) mutation explained by deletion of a maternally expressed gene and the simultaneous production of agouti fusion RNAs. Development 120, 1695-1708.[Abstract]

Granholm, N. H., Opbroek, A. J., Harvison, G. A. and Kappenman, K. E (1990). Tyrosinase activity (TH, DO, PAGE-defined isozymes) and melanin production in regenerating hairbulb melanocytes of lethal yellow (Ay/a), black (a/a), agouti (AwJ/AwJ/) and albino (a/a/c2J/c2J) mice (C57BL/6J). Pigment Cell Res 3, 233-242.[Medline]

Halaban, R., Moellmann, G. E., Tamura, A., Kwon, B. S., Kuklinska, E., Pomerantz, S. H. and Lerner, A. B (1988). Tyrosinases of murine melanocytes with mutations at the albino locus. Proc. Nat. Acad. Sci. USA 85, 7241-7245.[Abstract/Free Full Text]

Hearing, V. J. and Ekel, T. M (1976). Mammalian tyrosinase: A comparison of tyrosine hydroxylation and melanin formation. Biochem. J 157, 549-557.[Medline]

Hearing, V. J (1987). Mammalian monophenol monooxygenase (tyrosinase):purification, properties, and reactions catalyzed. Meth. Enzymol 142, 154-165.[Medline]

Hearing, V. J. and Tsukamoto, K (1991). Enzymatic control of pigmentation in mammals. FASEB J 5, 2902-2909.[Abstract]

Hirobe, T (1982). Origin of melanosome structures and cytochemical localizations of tyrosinase activity in differentiating epidermal melanocytes of newborn mouse skin. J. Exp. Zool 224, 355-363.[Medline]

Hirobe, T (1991). Control of melanocyte proliferation and differentiation in the mouse epidermis. Pigment Cell Res 5, 1-11.

Imokawa, G., Yada, Y. and Hori, Y (1988). Induction of melanization within hair bulb melanocytes in chinchilla mutant by melanogenic stimulants. J. Invest. Dermatol 91, 106-113.[Medline]

Ito, S (1993). High-performance liquid chromatography (HPLC) analysis of eu-and pheomelanin in melanogenesis control. J. Invest. Dermatol 100, 166-.[Medline]

Ito, S. and Fujita, K (1985). Microanalysis of eumelanin and pheomelanin in hair and melanomas by chemical degradation and liquid chromatography. Anal. Biochem 144, 527-536.[Medline]

Jackson, I. J., Chambers, D. M., Tsukamoto, K., Copeland, N. G., Gilbert, D. J., Jenkins, N. A. and Hearing, V. J (1992). A second tyrosinase-related protein, TRP2, maps to and is mutated at the mouse slaty locus. EMBO J 11, 527-535.[Medline]

Jimenez, M., Maloy, W. L. and Hearing, V. J (1989). Specific identification of an authentic clone for mammalian tyrosinase. J. Biol. Chem 264, 3397-3403.[Abstract/Free Full Text]

Jimenez, M., Tsukamoto, K. and Hearing, V. J (1991). Tyrosinases from two different loci are expressed by normal and by transformed melanocytes. J. Biol. Chem 266, 1147-1156.[Abstract/Free Full Text]

Jimenez-Cervantes, C., Solano, F., Kobayashi, T., Urabe, K., Hearing, V. J., Lozano, J. A. and Garc\222a-Borron, J. C (1994). A new enzymatic function in the melanogenic pathway: the 5, 6-dihydroxyindole-2-carboxylic acid oxidase activity of tyrosinase-related protein-1 (TRP1). J. Biol. Chem 269, 17993-18001.[Abstract/Free Full Text]

Kappenman, K. E., Dvoracek, M. A., Harvison, G. A., Fuller, B. B. and Granholm, N. H (1992). Tyrosinase abundance and activity in murine hairbulb melanocytes of agouti mutants (C57BL/6J- a/a, Ay/a and AwJ/AwJ). Pigment Cell Res 5, 79-83.

Kobayashi, T., Urabe, K., Orlow, S. J., Higashi, K., Imokawa, G., Kwon, B. S., Potterf, B. and Hearing, V. J (1994). The pmel17/silver locus protein: characterization of its role in mammalian melanogenesis. J. Biol. Chem 269, 29198-29205.[Abstract/Free Full Text]

Kobayashi, T., Urabe, K., Winder, A. J., Jimenez-Cervantes, C., Imokawa, G., Brewington, T., Solano, F., Garc\222a-Borron, J. C. and Hearing, V. J (1994). Tyrosinase related protein 1 (TRP1) functions as a DHICA oxidase in melanin biosynthesis. EMBO J 13, 5818-5825.[Medline]

Kobayashi, T., Urabe, K., Winder, A. J., Tsukamoto, K., Brewington, T., Imokawa, G., Potterf, B. and Hearing, V. J (1994). The DHICA oxidase activity of TRP1 and interactions with other melanogenic enzymes. Pigment Cell Res 7, 227-234.[Medline]

K\232rner, A. M. and Pawelek, J. M (1980). DOPAchrome conversion: a possible control point in melanin biosynthesis. J. Invest. Dermatol 75, 192-195.[Medline]

K\232rner, A. M. and Pawelek, J. M (1982). Mammalian tyrosinase catalyzes three reactions in the biosynthesis of melanin. Science 217, 1163-1165.[Abstract/Free Full Text]

Kwon, B. S., Chintamaneni, C. D., Kozak, C. A., Copeland, N. G., Gilbert, D. J., Jenkins, N. A., Barton, D. E., Francke, U., Kobayashi, Y. and Kim, K. K (1991). A melanocyte-specific gene, Pmel 17, maps near the silver coat color locus on mouse chromosome 10 and is a syntenic region on human chromosome 12. Proc. Nat. Acad. Sci. USA 88, 9228-9232.[Abstract/Free Full Text]

Laemmli, U. K (1970). Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227, 680-685.[Medline]

Lamoreux, M. L., Woolley, C. and Pendergast, P (1986). Genetic controlsover activities of tyrosinase and DOPAchrome conversion factor in murine melanocytes. Genetics 113, 967-984.[Abstract/Free Full Text]

Lamoreux, M. L., Zhou, B. K., Rosemblat, S. and Orlow, S. J (1994). The melanogenic complex in pheomelanic mice. Pigment Cell Res 7, 28-.

Lu, D., Willard, D., Patel, I. R., Kadwell, S., Overton, L., Kost, T., Luther, M., Chen, W., Woychik, R. P., Wilkison, W. O. and Cone, R. D (1994). Agouti protein is an antagonist of the melanocyte-stimulating-hormone receptor. Nature 371, 799-802.[Medline]

Miller, M. W., Duhl, D. M. J., Vrieling, H., Cordes, S. P., Ollmann, M. M., Winkes, B. M. and Barsh, G. S (1993). Cloning of the mouse agouti gene predicts a secreted protein ubiquitously expressed in mice carrying the lethal yellow mutation. Genes Dev 7, 454-467.[Abstract/Free Full Text]

Movaghar, M. and Hunt, D. M (1987). Tyrosinase activity and the expression of the agouti gene in the mouse. J. Exp. Zool 243, 473-480.[Medline]

Moyer, F. H (1963). Genetic effects on melanosome fine structure and ontogeny in normal and malignant cells. Ann. NY Acad. Sci 100, 584-606.

Orlow, S. J., Zhou, B. K., Chakraborty, A. K., Drucker, M., Pifko-Hirst, S. and Pawelek, J. M (1994). High-molecular-weight forms of tyrosinase and the tyrosinase-related proteins: evidence for a melanogenic complex. J. Invest. Dermatol 103, 196-201.[Medline]

Palumbo, A., d'Ischia, M., Misuraca, G. and Prota, G (1987). Effect of metal ions on the rearrangement of DOPAchrome. Biochim. Biophys. Acta 925, 203-209.[Medline]

Rosemblat, S., Durham-Pierre, D., Gardner, J. M., Nakatsu, Y., Brilliant, M. H. and Orlow, S. J (1994). Identification of a melanosomal membrane protein encoded by the pink-eyed dilution (type II oculocutaneous albinism) gene. Proc. Nat. Acad. Sci. USA 91, 12071-12075.[Abstract/Free Full Text]

Sakurai, T., Ochiai, H. and Takeuchi, T (1975). Ultrastructural change of melanosomes associated with agouti pattern formation in mouse hair. Dev. Biol 47, 466-471.[Medline]

Silvers, W. K (1958). An experimental approach to action of genes at the agouti locus in the mouse. III. Transplants of newborn Aw-, A-, and at-skin to Ay-, Aw-, A-and aa hosts. J. Exp. Zool 137, 189-196.[Medline]

Tamate, H. B., Hirobe, T., Wakamatsu, K., Ito, S., Shibahara, S. and Ishikawa, K (1989). Levels of tyrosinase and its mRNA in coat-color mutants of C57BL/10J congenic mice: effects of genic substitution at the agouti, brown, albino, dilute and pink-eyed dilution loci. J. Exp. Zool 250, 304-311.[Medline]

Thody, A. J. and Burchill, S. A (1992). Tyrosinase and the regulation of coat color changes in C3H-HeAvy mice. Pigment Cell Res 5, 335-339.[Medline]

Tripathi, R. K., Hearing, V. J., Urabe, K., Aroca, P. and Spritz, R. A (1992). Mutational mapping of the catalytic activities of human tyrosinase. J. Biol. Chem 267, 23707-23712.[Abstract/Free Full Text]

Tsukamoto, K., Jackson, I. J., Urabe, K., Montague, P. M. and Hearing, V. J (1992). A second tyrosinase-related protein, TRP2, is a melanogenic enzyme termed DOPAchrome tautomerase. EMBO J 11, 519-526.[Medline]

Winder, A. J., Wittbjer, A., Rosengren, E. and Rorsman, H (1993). Fibroblasts expressing mouse c locus tyrosinase produce an authentic enzyme and synthesise phaeomelanin. J. Cell Sci 104, 467-475.[Abstract]

Winder, A. J., Kobayashi, T., Tsukamoto, K., Urabe, K., Aroca, P., Kameyama, K. and Hearing, V. J (1994). The tyrosinase gene family: Interactions of melanogenic proteins to regulate melanogenesis. Cell. Mol. Biol. Res 40, 613-626.[Medline]

Zhou, B. K., Kobayashi, T., Donatien, P. D., Bennett, D. C., Hearing, V. J. and Orlow, S. J (1994). Identification of a melanosomal matrix protein encoded by the murine (si) silver locus using \322organelle scanning\323. Proc. Nat. Acad. Sci. USA 91, 7076-7080.[Abstract/Free Full Text]




This article has been cited by other articles:


Home page
GeneticsHome page
N. J. Nadeau, F. Minvielle, S. Ito, M. Inoue-Murayama, D. Gourichon, S. A. Follett, T. Burke, and N. I. Mundy
Characterization of Japanese Quail yellow as a Genomic Deletion Upstream of the Avian Homolog of the Mammalian ASIP (agouti) Gene
Genetics, February 1, 2008; 178(2): 777 - 786.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
T. Kobayashi and V. J. Hearing
Direct interaction of tyrosinase with Tyrp1 to form heterodimeric complexes in vivo
J. Cell Sci., December 15, 2007; 120(24): 4261 - 4268.
[Abstract] [Full Text] [PDF]


Home page
IOVSHome page
B. P. Brooks, D. M. Larson, C.-C. Chan, S. Kjellstrom, R. S. Smith, M. A. Crawford, L. Lamoreux, M. Huizing, R. Hess, X. Jiao, et al.
Analysis of Ocular Hypopigmentation in Rab38cht/cht Mice
Invest. Ophthalmol. Vis. Sci., September 1, 2007; 48(9): 3905 - 3913.
[Abstract] [Full Text] [PDF]


Home page
GeneticsHome page
U. Gunnarsson, A. R. Hellstrom, M. Tixier-Boichard, F. Minvielle, B. Bed'hom, S. Ito, P. Jensen, A. Rattink, A. Vereijken, and L. Andersson
Mutations in SLC45A2 Cause Plumage Color Variation in Chicken and Japanese Quail
Genetics, February 1, 2007; 175(2): 867 - 877.
[Abstract] [Full Text] [PDF]


Home page
GeneticsHome page
S. Kerje, P. Sharma, U. Gunnarsson, H. Kim, S. Bagchi, R. Fredriksson, K. Schutz, P. Jensen, G. von Heijne, R. Okimoto, et al.
The Dominant white, Dun and Smoky Color Variants in Chicken Are Associated With Insertion/Deletion Polymorphisms in the PMEL17 Gene
Genetics, November 1, 2004; 168(3): 1507 - 1518.
[Abstract] [Full Text] [PDF]


Home page
Hum Mol GenetHome page
D. L. Duffy, N. F. Box, W. Chen, J. S. Palmer, G. W. Montgomery, M. R. James, N. K. Hayward, N. G. Martin, and R. A. Sturm
Interactive effects of MC1R and OCA2 on melanoma risk phenotypes
Hum. Mol. Genet., February 15, 2004; 13(4): 447 - 461.
[Abstract] [Full Text] [PDF]


Home page
Nucleic Acids ResHome page
D. Fang, Y. Tsuji, and V. Setaluri
Selective down-regulation of tyrosinase family gene TYRP1 by inhibition of the activity of melanocyte transcription factor, MITF
Nucleic Acids Res., July 15, 2002; 30(14): 3096 - 3106.
[Abstract] [Full Text] [PDF]


Home page
Arch DermatolHome page
J. V. Schaffer and J. L. Bolognia
The Melanocortin-1 Receptor: Red Hair and Beyond
Arch Dermatol, November 1, 2001; 137(11): 1477 - 1485.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
G. Raposo, D. Tenza, D. M. Murphy, J. F. Berson, and M. S. Marks
Distinct Protein Sorting and Localization to Premelanosomes, Melanosomes, and Lysosomes in Pigmented Melanocytic Cells
J. Cell Biol., February 20, 2001; 152(4): 809 - 824.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. M. Ollmann and G. S. Barsh
Down-regulation of Melanocortin Receptor Signaling Mediated by the Amino Terminus of Agouti Protein in Xenopus Melanophores
J. Biol. Chem., May 28, 1999; 274(22): 15837 - 15846.
[Abstract] [Full Text] [PDF]


Home page
GeneticsHome page
B. K. Rana, D. Hewett-Emmett, L. Jin, B. H.-J. Chang, N. Sambuughin, M. Lin, S. Watkins, M. Bamshad, L. B. Jorde, M. Ramsay, et al.
High Polymorphism at the Human Melanocortin 1 Receptor Locus
Genetics, April 1, 1999; 151(4): 1547 - 1557.
[Abstract] [Full Text]


Home page
J. Biol. Chem.Home page
E. Aberdam, C. Bertolotto, E. V. Sviderskaya, V. de Thillot, T. J. Hemesath, D. E. Fisher, D. C. Bennett, J.-P. Ortonne, and R. Ballotti
Involvement of Microphthalmia in the Inhibition of Melanocyte Lineage Differentiation and of Melanogenesis by Agouti Signal Protein
J. Biol. Chem., July 31, 1998; 273(31): 19560 - 19565.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
M. Furumura, C. Sakai, S. B. Potterf, W. D. Vieira, G. S. Barsh, and V. J. Hearing
Characterization of genes modulated during pheomelanogenesis using differential display
PNAS, June 23, 1998; 95(13): 7374 - 7378.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
C. Bertolotto, R. Buscà, P. Abbe, K. Bille, E. Aberdam, J.-P. Ortonne, and R. Ballotti
Different cis-Acting Elements Are Involved in the Regulation of TRP1 and TRP2 Promoter Activities by Cyclic AMP: Pivotal Role of M Boxes (GTCATGTGCT) and of Microphthalmia
Mol. Cell. Biol., February 1, 1998; 18(2): 694 - 702.
[Abstract] [Full Text]


Home page
Genes Dev.Home page
M. M. Ollmann, M. L. Lamoreux, B. D. Wilson, and G. S. Barsh
Interaction of Agouti protein with the melanocortin 1 receptor in vitro and in vivo
Genes & Dev., February 1, 1998; 12(3): 316 - 330.
[Abstract] [Full Text]


Home page
J. Biol. Chem.Home page
M. Furumura, S. B. Potterf, K. Toyofuku, J. Matsunaga, J. Muller, and V. J. Hearing
Involvement of ITF2 in the Transcriptional Regulation of Melanogenic Genes
J. Biol. Chem., July 20, 2001; 276(30): 28147 - 28154.
[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 Kobayashi, T.
Right arrow Articles by Hearing, V. J.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Kobayashi, T.
Right arrow Articles by Hearing, V. J.