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N端前结构域和亚基间连接区的PEST氨基酸残基对前半胱天冬酶-7自身激活的调节作用。

Modulation of procaspase-7 self-activation by PEST amino acid residues of the N-terminal prodomain and intersubunit linker.

作者信息

Alves Juliano, Garay-Malpartida Miguel, Occhiucci João M, Belizário José E

机构信息

a Department of Pharmacology, Institute of Biomedical Sciences, Avenida Lineu Prestes, 1524, São Paulo, SP, 05508-900, Brazil.

b School of Arts, Communication and Humanity, University of São Paulo, Rua Arlindo Béttio, 1000, São Paulo, SP, 03828-000, Brazil.

出版信息

Biochem Cell Biol. 2017 Dec;95(6):634-643. doi: 10.1139/bcb-2016-0220. Epub 2017 Jun 28.

Abstract

Procaspase-7 zymogen polypeptide is composed of a short prodomain, a large subunit (p20), and a small subunit (p10) connected to an intersubunit linker. Caspase-7 is activated by an initiator caspase-8 and -9, or by autocatalysis after specific cleavage at IQAD↓S located at the intersubunit linker. Previously, we identified that PEST regions made of amino acid residues Pro (P), Glu (E), Asp (D), Ser (S), Thr (T), Asn (N), and Gln (Q) are conserved flanking amino acid residues in the cleavage sites within a prodomain and intersubunit linker of all caspase family members. Here we tested the impact of alanine substitution of PEST amino acid residues on procaspase-7 proteolytic self-activation directly in Escherichia coli. The p20 and p10 subunit cleavage were significantly delayed in double caspase-7 mutants in the prodomain (N18A/P26A) and intersubunit linker (S199A/P201A), compared with the wild-type caspase-7. The S199A/P201A mutants effectively inhibited the p10 small subunit cleavage. However, the mutations did not change the kinetic parameters (k/K) and optimal tetrapeptide specificity (DEVD) of the purified mutant enzymes. The results suggest a role of PEST-amino acid residues in the molecular mechanism for prodomain and intersubunit cleavage and caspase-7 self-activation.

摘要

前半胱天冬酶-7酶原多肽由一个短的前结构域、一个大亚基(p20)和一个通过亚基间连接区相连的小亚基(p10)组成。半胱天冬酶-7由起始半胱天冬酶-8和-9激活,或在亚基间连接区的IQAD↓S处特异性切割后通过自催化激活。此前,我们发现由氨基酸残基脯氨酸(P)、谷氨酸(E)、天冬氨酸(D)、丝氨酸(S)、苏氨酸(T)、天冬酰胺(N)和谷氨酰胺(Q)组成的PEST区域是所有半胱天冬酶家族成员前结构域和亚基间连接区切割位点两侧保守的氨基酸残基。在此,我们直接在大肠杆菌中测试了PEST氨基酸残基丙氨酸替代对前半胱天冬酶-7蛋白水解自激活的影响。与野生型半胱天冬酶-7相比,前结构域(N18A/P26A)和亚基间连接区(S199A/P201A)的双半胱天冬酶-7突变体中p20和p10亚基的切割明显延迟。S199A/P201A突变体有效抑制了p10小亚基的切割。然而,这些突变并未改变纯化突变酶的动力学参数(k/K)和最佳四肽特异性(DEVD)。结果表明PEST氨基酸残基在前结构域和亚基间切割以及半胱天冬酶-7自激活的分子机制中发挥作用。

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