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The crystal structures of human calpains 1 and 9 imply diverse mechanisms of action and auto-inhibition

机译:人钙蛋白酶1和9的晶体结构暗示了多种作用和自抑制机制

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Calpains are calcium activated cysteine proteases found throughout the animal, plant, and fungi kingdoms; 14 isoforms, have been described in the human genome. Calpains have been implicated in multiple models of human disease; for instance, calpain 1 is activated in the brains of individuals with Alzheimer's disease, and the digestive tract specific calpain 9 is down-regulated in gastric cancer cell lines. We have solved the structures of human calpain 1 and calpain 9 protease cores using crystallographic methods; both structures have clear implications for the function of non-catalytic domains of full-length calpains in the calcium-mediated activation of the enzyme. The structure of minicalpain 1 is similar to previously solved structures of the protease core. Auto-inhibition in this system is most likely through rearrangements of a central helical/loop region near the active site cysteine, which occlude the substrate binding site. However, the structure of minicalpain 9 indicates that auto-inhibition in this enzyme is mediated through large intra-domain movements that misalign the catalytic triad. This disruption is reminiscent of the full-length inactive calpain conformation. The structures of the highly conserved, ubiquitously expressed human calpain I and the more tissue specific human calpain 9 indicate that although there are high levels of sequence conservation throughout the calpain family, isolated structures of family members are insufficient to explain the molecular mechanism of activation for this group of proteins. Crown Copyright (c) 2006 Published by Elsevier Ltd. All rights reserved.
机译:钙蛋白酶是遍布动物,植物和真菌界的钙激活的半胱氨酸蛋白酶。在人类基因组中已经描述了14种亚型。钙蛋白酶已牵涉到多种人类疾病模型中。例如,钙蛋白酶1在患有阿尔茨海默氏病的个体的大脑中被激活,而消化道特异性钙蛋白酶9在胃癌细胞系中被下调。我们已经使用结晶学方法解决了人钙蛋白酶1和钙蛋白酶9蛋白酶核心的结构。这两种结构对于全长钙蛋白酶的非催化结构域在钙介导的酶活化中的功能具有明显的意义。 Minicalpain 1的结构类似于以前解析的蛋白酶核心结构。该系统中的自动抑制很可能是通过在活性位点半胱氨酸附近的中心螺旋/环区的重排而发生的,该位点会阻塞底物结合位点。但是,minicalpain 9的结构表明该酶的自抑制作用是通过大量的域内运动来介导的,该运动使催化三联体错位。这种破坏使人想起了全长的非活性钙蛋白酶构象。高度保守,普遍表达的人钙蛋白酶I和更具组织特异性的人钙蛋白酶9的结构表明,尽管在整个钙蛋白酶家族中序列保守程度很高,但家族​​成员的分离结构不足以解释其激活的分子机制。这一组蛋白质。 Crown版权所有(c)2006,由Elsevier Ltd.发行。保留所有权利。

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