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Benjannet, S., Rondeau, N., Day, R., Chretien, M. and Seidah, N. G (1991). PC1 and PC2 are proprotein convertases capable of cleaving pro-opiomelanocortin at distinct pairs of basic residues. Proc. Nat. Acad. Sci. USA 88, 3564-3568.[Abstract/Free Full Text]

Bloomquist, B. T., Eipper, B. A. and Mains, R. E (1991). Prohormone-converting enzymes: regulation and evaluation of function using anti-sense RNA. Mol. Endocrinol 5, 2014-2024.[Medline]

Bloomquist, B. T., Darlington, D. N., Mains, R. E. and Eipper, B. A (1994). RESP18, a novel endocrine secretory protein transcript, and four other transcripts are regulated in parallel with pro-opiomelanocortin in melanotropes. J. Biol. Chem 269, 9113-9122.[Abstract/Free Full Text]

Braks, J. A. M. and Martens, G. J. M (1994). 7B2 is a neuroendocrine chaperone that transiently interacts with prohormone convertase PC2 in the secretory pathway. Cell 78, 263-273.[Medline]

Burgess, T. L. and Kelly, R. B (1987). Constitutive and regulated secretion of proteins. Annu. Rev. Cell Biol 3, 243-293.

Chanat, E. and Huttner, W. B (1991). Milieu-induced, selective aggregationof regulated secretory proteins in the trans-Golgi network. J. Cell Biol 115, 1505-1519.[Abstract/Free Full Text]

Chidgey, M. A. J (1993). Protein targeting to dense-core secretory granules. BioEssays 15, 317-321.[Medline]

Chomczynski, P. and Sacchi, N (1987). Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction. Anal. Biochem 162, 156-159.[Medline]

de Rijk, E. P. T. C., Jenks, B. G. and Roubos, E. W (1990). Morphology of the pars intermedia and the melanophore-stimulating cells in Xenopus laevis in relation to background adaptation. Gen. Comp. Endocrinol 79, 74-82.[Medline]

Eipper, B. A. and Mains, R. E (1988). Peptide-amidation. Annu. Rev. Physiol 50, 333-344.[Medline]

Forgac, M (1989). Structure and function of vacuolar class of ATP-driven proton pumps. Physiol. Rev 69, 765-796.[Free Full Text]

Fricker, L. D (1988). Carboxypeptidase E. Annu. Rev. Physiol 50, 309-321.[Medline]

Gerdes, H. H., Rosa, P., Phillips, E., Baeuerle, P. A., Frank, R., Argos, P. and Huttner, W. B (1989). The primary structure of human secretogranin II, a widespread tyrosine-sulfated secretory granule protein that exhibits low pH-and calcium-induced aggregation. J. Biol. Chem 264, 12009-12015.[Abstract/Free Full Text]

Glembotski, C. G (1982). Acetylation of-melanotropin and -endorphin in the rat intermediate pituitary: subcellular localization. J. Biol. Chem 257, 10493-10500.[Abstract/Free Full Text]

Halban, P. A. and Irminger, J. C (1994). Sorting and processing of secretory proteins. Biochem. J 299, 1-18.

Hartmann, E., G\232rlich, D., Kosta, S., Otto, A., Kraft, R., Knespel, S., Burger, E., Rapoport, T. A. and Prehn, S (1992). A tetrameric complex of membrane proteins in the endoplasmic reticulum. Eur. J. Biochem 214, 375-381.[Medline]

Henomatsu, N., Yoshimori, T., Yamamoto, A., Moriyama, Y. and Tashiro, Y (1994). Inhibition of intracellular transport of newly synthesized prolactin by bafilomycin A1 in a pituitary tumor cell line, GH3cells. Eur. J. Cell Biol 62, 127-139.

Holthuis, J. C. M., Schoonderwoert, V. T. G. and Martens, G. J. M (1994). A vertebrate homolog of the actin-bundling protein fascin. Biochim. Biophys. Acta 1219, 184-188.[Medline]

Hopkins, C. R (1970). Studies on secretory activity in the pars intermedia of Xenopus laevis . 1. Fine structural changes related to the onset of secretory activity in vivo. Tissue & Cell 2, 59-70.

Huttner, W. B (1988). Tyrosine sulfation and the secretory pathway. Annu. Rev. Physiol 50, 363-376.[Medline]

Huttner, W. B., Gerdes, H. H. and Rosa, P (1991). The granin (chromogranin/secretogranin) family. Trends Biochem. Sci 16, 27-30.[Medline]

Huttner, W. B. and Natori, S (1995). Helper proteins for neuroendocrine secretion. Curr. Biol 5, 242-245.[Medline]

Jenks, B. G., Overbeeke, A. P. and McStay, B. F (1977). Synthesis, storage and release of MSH in the pars intermedia of the pituitary gland of Xenopus laevis during background adaptation. Can. J. Zool 55, 922-927.

Kane, P. M., Kuehn, M. C., Howald-Stevenson, I. and Stevens, T. H (1992). Assembly and targeting of peripheral and integral membrane subunits of the yeast vacuolar H+-ATPase. J. Biol. Chem 267, 447-454.[Abstract/Free Full Text]

Lisowsky, T (1992). Dual function of a new nuclear gene for oxidative phosphorylation and vegetative growth in yeast. Mol. Gen. Genet 232, 58-64.[Medline]

Loh, Y. P. and Gainer, H (1982). Processing of normal and non-glycosylated forms of toad pro-opiomelanocortin by rat intermediate pituitary lobe pro-opiomelanocortin converting enzyme activity. Life Sci 31, 3043-3050.[Medline]

Manolson, M. F., Proteau, D., Preston, R., Stenbit, A., Roberts, B. T., Hoyt, M. A., Preuss, D., Mulholland, J., Botstein, D. and Jones, E. W (1992). The VPH1 gene encodes a 95-kDa integral membrane polypeptide required for in vivo assembly and activity of the vacuolar H+-ATPase. J. Biol. Chem 267, 14294-14303.[Abstract/Free Full Text]

Martens, G. J. M., Weterings, K. A. P., van Zoest, I. D. and Jenks, B. G (1987). Physiologically-induced changes in pro-opiomelanocortin mRNA levels in the pituitary gland of the amphibian Xenopus laevis. Biochem. Biophys. Res. Commun 143, 678-684.[Medline]

Martens, G. J. M., Bussemakers, M. J. G., Ayoubi, T. A. Y. and Jenks, B. G (1989). The novel pituitary polypeptide 7B2 is a highly-conserved protein coexpressed with proopiomelanocortin. Eur. J. Biochem 181, 75-79.[Medline]

Migliaccio, G., Nicchitta, C. V. and Blobel, G (1992). The signal sequence receptor, unlike the signal particle receptor, is not essential for protein translocation. J. Cell Biol 117, 15-25.[Abstract/Free Full Text]

Moore, H. P. H., Gumbiner, B. and Kelly, R. B (1983). Chloroquine diverts ACTH from a regulated to a constitutive secretory pathway in AtT20 cells. Nature 302, 434-436.[Medline]

Orci, L., Ravazolla, M., Amherdt, M., Perrelet, A., Powell, S. K., Quinn, D. L. and Moore, H. P (1987). The trans-most cisternae of the Golgi complex: a compartment for sorting of secretory and plasma membrane proteins. Cell 51, 1039-1051.[Medline]

Ottiger, H. P., Battenberg, E. F., Tsou, A. P., Bloom, F. E. and Sutcliffe, J. G (1990). 1B1075: a brain-and pituitary-specific mRNA that encodes a novel chromogranin/secretogranin-like component of intracellular vesicles. J. Neurosci 10, 3135-3147.[Abstract]

Pryer, K. N., Wuestehube, L. J. and Schekman, R (1992). Vesicle-mediated protein sorting. Annu. Rev. Biochem 61, 471-516.[Medline]

Reaves, J. R. and Dannies, P. S (1991). Is a sorting signal necessary to package proteins into secretory granules?. Mol. Cell. Endocrinol 79, 141-.

Rodriguez, I. R. and Chader, G. J (1992). A novel method for the isolation of tissue-specific genes. Nucl. Acids Res 20, 3528-.[Free Full Text]

Rothman, J. E. and Orci, L (1992). Molecular dissection of the secretory pathway. Nature 355, 409-415.[Medline]

Sanger, F., Nicklen, S. and Coulson, A. R (1977). DNA sequencing with chain terminating inhibitors. Proc. Nat. Acad. Sci. USA 74, 5463-5467.[Abstract/Free Full Text]

Saria, A., Troger, J., Kirchmair, R., Fischer-Colbrie, R., Hogue-Angeletti, R. and Winkler, H (1993). Secretoneurin releases dopamine from rat striatal slices: a biological effect of a peptide derived from secretogranin II (chromogranin C). Neuroscience 54, 1-4.[Medline]

Schimm\232ller, F., Singer-Kruger, B., Schr\232der, S., Kruger, U., Barlowe, C. and Riezman, H (1993). The absence of Emp24p, a component of ER-derived COPII-coated vesicle, causes a defect in transport of selected proteins to Golgi. EMBO J 14, 1329-1339.[Medline]

Supek, F., Supekova, L., Mandiyan, S., Pan, Y. E., Nelson, H. and Nelson, N (1994). A novel subunit for vacuolar H+-ATPase from chromaffin granules. J. Biol. Chem 269, 24102-24106.[Abstract/Free Full Text]

Thomas, L., Leduc, R., Thorne, B., Smeekens, S. P., Steiner, D. F. and Thomas, G (1991). Kex2-like endoproteases PC2 and PC3 accurately cleave a model prohormone in mammalian cells: evidence for a common core of neuroendocrine processing enzymes. Proc. Nat. Acad. Sci. USA 88, 5297-5301.[Abstract/Free Full Text]

Urade, R., Nasu, M., Moriyama, T., Wada, K. and Kito, M (1992). Protein degradation by the phosphoinositide-specific phospholipase C-a family from rat liver endoplasmic reticulum. J. Biol. Chem 267, 15152-15159.[Abstract/Free Full Text]

Wada, I., Rindress, D., Cameron, P. H., Ou, W. J., Doherty II, J. J., Louvard, D., Bell, A. W., Dignard, D., Thomas, D. Y. and Bergeron, J. J. M (1991). SSRa and associated calnexin are major calcium binding proteins of the endoplasmic reticulum membrane. J. Biol. Chem 266, 19599-19610.[Abstract/Free Full Text]




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