Chauvet J, Michel G, Rouillé Y, Chauvet M T, Acher R
Laboratory of Biological Chemistry, University of Paris VI, France.
Int J Pept Protein Res. 1991 Mar;37(3):236-40. doi: 10.1111/j.1399-3011.1991.tb00276.x.
The proteolytic processing of frog (Rana esculenta) proopiomelanocortin in melanotropic cells of the intermediate pituitary gland has been examined through purification of the mature fragments by reverse-phase high-pressure liquid chromatography and microsequencing of isolated peptides. alpha-Melanotropin, beta-melanotropin, Lys-gamma-melanotropin, corticotropin-like intermediate lobe peptide, and hinge peptide have been isolated and chemically characterized. The results show a high preservation in the processing sites of frog proopiomelanotropin when compared to bovine counterparts. They reveal also a great conservation of the processing enzyme equipment of melanotropic cells in tetrapods species. Identification of Lys-gamma-melanotropin suggests the occurrence of an endopeptidase able to cleave between two basic residues. On the other hand alpha-melanotropin does not appear to be N-acetylated, as previously found in the clawed-toad Xenopus laevis, and this feature might distinguish amphibian from mammalian proopiomelanocortin processing.
通过反相高压液相色谱法纯化成熟片段并对分离出的肽段进行微量测序,研究了蛙(食用蛙)阿黑皮素原在垂体中间叶促黑素细胞中的蛋白水解加工过程。已分离出α-促黑素、β-促黑素、赖氨酸-γ-促黑素、促肾上腺皮质激素样中叶肽和铰链肽,并对其进行了化学表征。结果表明,与牛的对应物相比,蛙阿黑皮素原的加工位点具有高度保守性。它们还揭示了四足动物物种促黑素细胞加工酶设备的高度保守性。赖氨酸-γ-促黑素的鉴定表明存在一种能够在两个碱性残基之间切割的内肽酶。另一方面,α-促黑素似乎没有像先前在爪蟾非洲爪蟾中发现的那样进行N-乙酰化,这一特征可能区分两栖动物和哺乳动物阿黑皮素原的加工过程。