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Systemic hyalinosis mutations in the CMG2 ectodomain leading to loss of function through retention in the endoplasmic reticulum.

机译:CMG2胞外域的系统性透明质酸突变通过保留在内质网中导致功能丧失。

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摘要

Systemic hyalinosis is an autosomal recessive disease that encompasses two allelic syndromes, infantile systemic hyalinosis (ISH) and juvenile hyaline fibromatosis (JHF), which are caused by mutations in the CMG2 gene. Here we have analyzed the cellular consequences of five patient-derived point mutations in the extracellular von Willebrand domain or the transmembrane domain of the CMG2 protein. We found that four of the mutations led to retention of the protein in the endoplasmic reticulum (ER), albeit through different mechanisms. Analysis of recombinant CMG2 von Willebrand factor A (vWA) domains, to which three of the mutations map, indicated that the mutations did not prevent proper folding and ligand binding, suggesting that, in vivo, slow folding, rather than misfolding, is responsible for ER retention. Our work shows that systemic hyalinosis can be qualified as a conformational disease, at least for the mutations that have been mapped to the extracellular and transmembrane domains. The long ER half-life and the ligand binding ability of the mutated von Willebrand domains suggest that treatments based on chemical chaperones could be beneficial.
机译:全身性玻璃体病是一种常染色体隐性遗传疾病,包括两个等位基因综合征,即婴儿性系统性玻璃体病(ISH)和青少年性玻璃体纤维瘤病(JHF),它们是由CMG2基因突变引起的。在这里,我们分析了CMG2蛋白的细胞外von Willebrand结构域或跨膜结构域中五个患者来源的点突变的细胞后果。我们发现,尽管有不同的机制,但有四个突变导致蛋白质保留在内质网(ER)中。分析了其中三个突变的重组CMG2 von Willebrand因子A(vWA)结构域,表明该突变并未阻止适当的折叠和配体结合,表明在体内缓慢折叠而不是错误折叠是造成这种情况的原因ER保留。我们的工作表明,系统性透明质病至少可以映射到细胞外和跨膜结构域的突变中,可以作为构象性疾病。较长的ER半衰期和突变的von Willebrand域的配体结合能力表明,基于化学伴侣的治疗可能是有益的。

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