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αII血影蛋白第1175位密码子的定点诱变可调节其对μ-钙蛋白酶的敏感性。

Site-directed mutagenesis of alpha II spectrin at codon 1175 modulates its mu-calpain susceptibility.

作者信息

Stabach P R, Cianci C D, Glantz S B, Zhang Z, Morrow J S

机构信息

Department of Pathology, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

Biochemistry. 1997 Jan 7;36(1):57-65. doi: 10.1021/bi962034i.

Abstract

Intracellular proteolysis by the calpains, a family of Ca2+ activated cysteine proteases, is a ubiquitous yet poorly understood process. Their action is implicated in an array of cellular and pathologic processes, including long-term potentiation, synaptic remodeling, protein kinase C and steroid receptor activation, ischemic cellular injury, and apoptosis. Unlike most proteases, the calpains display unusually strict substrate specificity, often cleaving only one or two bonds in proteins with hundreds of potential sites. Studies of synthetic peptides have defined sequences that modulate their specificity, but little data exist in the context of a bona fide protein. A prominent substrate for mu-calpain is alpha II spectrin (fodrin, brain spectrin), which is cleaved between Tyr1176 and Gly1177 within spectrin's 11th structural repeat unit. We have cloned and characterized human fetal brain alpha II spectrin (GenBank no. U26396) and identified a new Thr1300 to Ile polymorphism. From this clone, recombinant GST-fusion proteins representing repeat units 8-14 have been prepared and used to systematically explore the in vitro determinants of mu-calpain sensitivity. Twenty different amino acids were substituted by site-directed mutagenesis for wild-type Val1175, the penultimate (P2) residue flanking the major calpain cleavage site in alpha II spectrin. Gly, Pro, and Asp, and to a lesser extent Phe and Glu, substantively inhibited the susceptibility of this site to mu-calpain; other substitutions yielded lesser effects. Dynamic molecular modeling of the 11th structural repeat of human alpha II spectrin incorporating the various mutations suggests that the calpain cleavage site with its flanking calmodulin binding domain interrupts helix C of alpha II spectrin's 11th repetitive unit without significantly disrupting the repeat's triple-helical motif. This model predicts that the critical Tyr1176-Gly1177 bond occurs in a highly exposed loop juxtaposed between helix C and the calmodulin binding domain and that mutations at the P2 position subtly alter the conformation about this site. We conclude that secondary and tertiary conformational features surrounding the cleavage site, rather than the linear sequence itself, dominate the determinants that define alpha II spectrin's mu-calpain susceptibility.

摘要

钙蛋白酶是一类Ca2+激活的半胱氨酸蛋白酶,其介导的细胞内蛋白水解是一个普遍存在但却了解甚少的过程。它们的作用涉及一系列细胞和病理过程,包括长期增强、突触重塑、蛋白激酶C和类固醇受体激活、缺血性细胞损伤以及细胞凋亡。与大多数蛋白酶不同,钙蛋白酶表现出异常严格的底物特异性,通常在具有数百个潜在位点的蛋白质中仅切割一两个肽键。对合成肽的研究已经确定了调节其特异性的序列,但在真正的蛋白质背景下几乎没有相关数据。μ-钙蛋白酶的一个主要底物是αII血影蛋白(肌动蛋白结合蛋白,脑血影蛋白),它在血影蛋白第11个结构重复单元内的Tyr1176和Gly1177之间被切割。我们已经克隆并鉴定了人胎儿脑αII血影蛋白(GenBank编号U26396),并确定了一个新的Thr1300到Ile多态性。从这个克隆中,制备了代表重复单元8-14的重组GST融合蛋白,并用于系统地探索μ-钙蛋白酶敏感性的体外决定因素。通过定点诱变,将20种不同的氨基酸替换为野生型Val1175,Val1175是αII血影蛋白中主要钙蛋白酶切割位点侧翼的倒数第二个(P2)残基。甘氨酸、脯氨酸和天冬氨酸,以及程度较轻的苯丙氨酸和谷氨酸,实质性地抑制了该位点对μ-钙蛋白酶的敏感性;其他替换产生的影响较小。结合各种突变的人αII血影蛋白第11个结构重复的动态分子模型表明,钙蛋白酶切割位点及其侧翼的钙调蛋白结合结构域打断了αII血影蛋白第11个重复单元的螺旋C,而没有显著破坏该重复的三螺旋基序。该模型预测,关键的Tyr1176-Gly1177键出现在螺旋C和钙调蛋白结合结构域之间并列的高度暴露的环中,并且P2位置的突变会微妙地改变该位点周围的构象。我们得出结论,切割位点周围的二级和三级构象特征,而不是线性序列本身,主导了定义αII血影蛋白对μ-钙蛋白酶敏感性的决定因素。

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