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Structures of human calpain-3 protease core with and without bound inhibitor reveal mechanisms of calpain activation

机译:具有和不具有结合抑制剂的人钙蛋白酶3蛋白酶核心的结构揭示了钙蛋白酶激活的机制

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摘要

Limb-girdle muscular dystrophy type 2a arises from mutations in the Ca2+-activated intracellular cysteine protease calpain-3. This calpain isoform is abundant in skeletal muscle and differs from the main isoforms, calpain-1 and -2, in being a homodimer and having two short insertion sequences. The first of these, IS1, interrupts the protease core and must be cleaved for activation and substrate binding. Here, to learn how calpain-3 can be regulated and inhibited, we determined the structures of the calpain-3 protease core with IS1 present or proteolytically excised. To prevent intramolecular IS1 autoproteolysis, we converted the active-site Cys to Ala. Small-angle X-ray scattering (SAXS) analysis of the C129A mutant suggested that IS1 is disordered and mobile enough to occupy several locations. Surprisingly, this was also true for the apo version of this mutant. We therefore concluded that IS1 might have a binding partner in the sarcomere and is unstructured in its absence. After autoproteolytic IS1 removal from the active Cys129 calpain-3 protease core, we could solve its crystal structures with and without the cysteine protease inhibitors E-64 and leupeptin covalently bound to the active-site cysteine. In each structure, the active state of the protease core was assembled by the cooperative binding of two Ca2+ ions to the equivalent sites used in calpain-1 and -2. These structures of the calpain-3 active site with residual IS1 and with bound E-64 and leupeptin may help guide the design of calpain-3–specific inhibitors.
机译:肢带型肌营养不良症2a型是由Ca 2 + 激活的细胞内半胱氨酸蛋白酶calpain-3的突变引起的。该钙蛋白酶同工型在骨骼肌中丰富,与主要同工型钙蛋白酶-1和-2不同,它是同型二聚体,具有两个短插入序列。其中第一个是IS1,可中断蛋白酶核心,必须将其裂解才能激活和结合底物。在这里,要了解如何调节和抑制calpain-3,我们确定了存在或蛋白水解切除的IS1的calpain-3蛋白酶核心的结构。为了防止分子内IS1的自蛋白水解,我们将活性位点Cys转换为Ala,对C129A突变体的小角X射线散射(SAXS)分析表明,IS1无序且可移动,足以占据多个位置。令人惊讶的是,对于该突变体的载脂蛋白版本也是如此。因此,我们得出的结论是,IS1在肌节中可能具有结合伴侣,并且在缺乏肌节时是无结构的。从活性Cys 129 钙蛋白酶3蛋白酶核心中自蛋白水解去除IS1后,我们可以解决在有或没有与活性位点半胱氨酸共价结合的半胱氨酸蛋白酶抑制剂E-64和亮肽素的晶体结构。在每个结构中,蛋白酶核心的活性状态是通过两个Ca 2 + 离子与钙蛋白酶1和-2中使用的等效位点的协同结合而组装的。带有残留IS1并结合有E-64和亮肽素的calpain-3活性位点的这些结构可能有助于指导calpain-3特异性抑制剂的设计。

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