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肽类激素的前体在蛋白水解加工位点具有共同的二级结构形成特征。

Precursors for peptide hormones share common secondary structures forming features at the proteolytic processing sites.

作者信息

Rholam M, Nicolas P, Cohen P

出版信息

FEBS Lett. 1986 Oct 20;207(1):1-6. doi: 10.1016/0014-5793(86)80002-3.

Abstract

We have analyzed the amino acid sequences situated around the putative proteolytic cleavage sites in twenty different biosynthetic precursors of peptide hormones by processing enzymes. The prediction of the probability for forming secondary structures around the basic amino acids, constituting the cleavage sites, was made using the modified method of Chou and Fasman. The results indicate that the processing sequences which are cleaved in vivo, are in all cases located inside regions with high beta-turn formation probability or else immediately adjacent to these structures. The beta-turn forming region at the cleavage locus, is flanked on both sides by amino acid sequences with a high probability for forming highly ordered structures, either beta-sheet or alpha-helix. These conformational features are not found in precursors around dibasic pairs, i.e. putative cleavage loci, but which are not cleaved in vivo and appear to be conserved. We hypothesize that beta-turns including the basic amino acids doublets, flanked by highly ordered secondary structures (either beta-sheet or alpha-helix) may constitute a minimal requirement for the recognition by the endoproteases involved in the processing of these precursors.

摘要

我们通过加工酶分析了二十种不同肽类激素生物合成前体中假定的蛋白水解切割位点周围的氨基酸序列。利用修改后的Chou和Fasman方法预测了构成切割位点的碱性氨基酸周围形成二级结构的概率。结果表明,在体内被切割的加工序列在所有情况下都位于具有高β-转角形成概率的区域内,或者紧邻这些结构。切割位点处的β-转角形成区域两侧是具有高概率形成高度有序结构(β-折叠或α-螺旋)的氨基酸序列。在双碱性对周围的前体中未发现这些构象特征,双碱性对即假定的切割位点,但它们在体内未被切割且似乎是保守的。我们推测,包含由高度有序二级结构(β-折叠或α-螺旋)侧翼的碱性氨基酸双峰的β-转角可能是这些前体加工过程中所涉及的内肽酶识别的最小要求。

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