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Mutants of collagen-specific molecular chaperone Hsp47 causing osteogenesis imperfecta are structurally unstable with weak binding affinity to collagen

机译:胶原蛋白特异性分子伴侣Hsp47的突变体导致骨肉型蛋白质缺乏细胞的结构不稳定,对胶原蛋白的弱结合亲和力

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摘要

Osteogenesis imperfecta (OI) is a genetic disorder characterized by fragile bones. Most OI cases are caused by defects in type I collagen structure or synthesis. Mutations in collagen specific molecular chaperone Hsp47, specifically L78P and L326P, lead to OI, yet these mutants are not fully characterized. Here, we found that both Hsp47 mutants were structurally unstable and formed high molecular weight complexes. They were degraded by the ubiquitin-proteasome system, and the collagen-binding ability of the mutants was significantly lower than that of the wild type. Although the chemical chaperone 4-PBA partially restores the solubility of the Hsp47 OI mutants, collagen-binding activity of Hsp47 was not improved. (C) 2015 Elsevier Inc. All rights reserved.
机译:osteogenesis不完全(oi)是一种脆弱骨骼以脆弱的遗传疾病为特征。 大多数oi病例是由I型胶原结构或合成缺陷引起的。 胶原蛋白特异性分子伴侣HSP47,特别是L78P和L326P的突变,导致OI,然而这些突变体没有完全表征。 在这里,我们发现HSP47突变体两种突变体在结构不稳定和形成高分子量复合物。 它们通过遍霉素 - 蛋白酶体系的降解,突变体的胶原结合能力显着低于野生型。 虽然化学伴侣4-PBA部分恢复了HSP47 OI突变体的溶解度,但HSP47的胶原结合活性未得到改善。 (c)2015 Elsevier Inc.保留所有权利。

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