首页> 外文期刊>Human Molecular Genetics >Chemical chaperone treatment reduces intracellular accumulation of mutant collagen IV and ameliorates the cellular phenotype of a C0L4A2 mutation that causes haemorrhagic stroke
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Chemical chaperone treatment reduces intracellular accumulation of mutant collagen IV and ameliorates the cellular phenotype of a C0L4A2 mutation that causes haemorrhagic stroke

机译:化学伴侣治疗可减少突变型胶原IV的细胞内积累并改善导致出血性中风的C0L4A2突变的细胞表型

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摘要

Haemorrhagic stroke accounts for ~20% of stroke cases and porencephaly is a clinical consequence of perinatal cerebral haemorrhaging. Here, we report the identification of a novel dominant G702D mutation in the collagen domain of COL4A2 (collagen IV alpha chain 2) in a family displaying porencephaly with reduced penetrance. COL4A2 is the obligatory protein partner of C0L4A1 but in contrast to most C0L4A1 mutations, the COL4A2 mutation does not lead to eye or kidney disease. Analysis of dermal biopsies from a patient and his unaffected father, who also carries the mutation, revealed that both display basement membrane (BM) defects. Intriguingly, defective collagen IV incorporation into the dermal BM was observed in the patient only and was associated with endoplasmic reticulum (ER) retention of COL4A2 in primary dermal fibroblasts. This intracellular accumulation led to ER stress, unfolded protein response activation, reduced cell proliferation and increased apoptosis. Interestingly, and/or clearance of mutant COL4A2 from the ER may be a critical modifier for disease development. Our analysis also revealed that mutant collagen IV is degraded via the proteasome. Importantly, treatment of patient cells with a chemical chaperone decreased intracellular COL4A2 levels, ER stress and apoptosis, demonstrating that reducing intracellular collagen accumulation can ameliorate the cellular phenotype of COL4A2 mutations. Importantly, these data highlight that manipulation of chaperone levels, intracellular collagen accumulation and ER stress are potential therapeutic options for collagen IV diseases including haemorrhagic stroke.
机译:出血性中风约占中风病例的20%,而漏孔性是围产期脑出血的临床后果。在这里,我们报告的COL4A2(胶原蛋白IV alpha链2)的胶原域中显示一个新颖的显性G702D突变的鉴定,该家族显示出毛孔畸形并具有低渗透率。 COL4A2是C0L4A1的必需蛋白伴侣,但与大多数C0L4A1突变相反,COL4A2突变不会导致眼部或肾脏疾病。对患者和未患病父亲的皮肤活检进行分析后发现,这两个患者均存在基底膜(BM)缺陷。有趣的是,仅在患者中观察到胶原蛋白IV掺入真皮BM中的缺陷,并且与初级真皮成纤维细胞中内质网(ER)保留COL4A2有关。这种细胞内积累导致内质网应激,未反应的蛋白反应激活,细胞增殖减少和凋亡增加。有趣的是,和/或从ER清除突变体COL4A2可能是疾病发展的关键调节剂。我们的分析还表明,突变型胶原IV通过蛋白酶体降解。重要的是,用化学分子伴侣处理患者细胞可降低细胞内COL4A2水平,内质网应激和凋亡,这表明减少细胞内胶原积聚可以改善COL4A2突变的细胞表型。重要的是,这些数据强调了对伴侣水平,细胞内胶原蓄积和内质网应激的操纵是包括出血性中风在内的胶原IV疾病的潜在治疗选择。

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