首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >Biomarkers in Lung Diseases: From Pathogenesis to Prediction to New Therapies: A non-BRICHOS SFTPC mutant (SP-CI73T) linked to interstitial lung disease promotes a late block in macroautophagy disrupting cellular proteostasis and mitophagy
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Biomarkers in Lung Diseases: From Pathogenesis to Prediction to New Therapies: A non-BRICHOS SFTPC mutant (SP-CI73T) linked to interstitial lung disease promotes a late block in macroautophagy disrupting cellular proteostasis and mitophagy

机译:肺部疾病中的生物标记物:从发病机理到预测到新疗法:与间质性肺病相关的非BRICHOS SFTPC突变体(SP-CI73T)促进了巨自噬的晚期阻滞破坏了细胞的蛋白质变形和线粒体。

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摘要

Mutation of threonine for isoleucine at codon 73 (I73T) in the human surfactant protein C (hSP-C) gene (SFTPC) accounts for a significant portion of SFTPC mutations associated with interstitial lung disease (ILD). Cell lines stably expressing tagged primary translation product of SP-C isoforms were generated to test the hypothesis that deposition of hSP-CI73T within the endosomal system promotes disruption of a key cellular quality control pathway, macroautophagy. By fluorescence microscopy, wild-type hSP-C (hSP-CWT) colocalized with exogenously expressed human ATP binding cassette class A3 (hABCA3), an indicator of normal trafficking to lysosomal-related organelles. In contrast, hSP-CI73T was dissociated from hABCA3 but colocalized to the plasma membrane as well as the endosomal network. Cells expressing hSP-CI73T exhibited increases in size and number of cytosolic green fluorescent protein/microtubule-associated protein 1 light-chain 3 (LC3) vesicles, some of which colabeled with red fluorescent protein from the gene dsRed/hSP-CI73T. By transmission electron microscopy, hSP-CI73T cells contained abnormally large autophagic vacuoles containing organellar and proteinaceous debris, which phenocopied ultrastructural changes in alveolar type 2 cells in a lung biopsy from a SFTPC I73T patient. Biochemically, hSP-CI73T cells exhibited increased expression of Atg8/LC3, SQSTM1/p62, and Rab7, consistent with a distal block in autophagic vacuole maturation, confirmed by flux studies using bafilomycin A1 and rapamycin. Functionally, hSP-CI73T cells showed an impaired degradative capacity for an aggregation-prone huntingtin-1 reporter substrate. The disruption of autophagy-dependent proteostasis was accompanied by increases in mitochondria biomass and parkin expression coupled with a decrease in mitochondrial membrane potential. We conclude that hSP-CI73T induces an acquired block in macroautophagy-dependent proteostasis and mitophagy, which could contribute to the increased vulnerability of the lung epithelia to second-hit injury as seen in ILD.
机译:人类表面活性剂蛋白C(hSP-C)基因(SFTPC)中第73位密码子(I73T)的苏氨酸突变为异源性肺疾病(ILD)的SFTPC突变的重要组成部分。产生了稳定表达SP-C同工型的带标签初级翻译产物的细胞系,以检验以下假设:hSP-C I73T 在内体系统中的沉积促进了关键细胞质量控制途径宏观自噬的破坏。通过荧光显微镜观察,野生型hSP-C(hSP-C WT )与外源表达的人类ATP结合盒A3类(hABCA3)共定位,这是正常运输到溶酶体相关细胞器的指标。相反,hSP-C I73T 从hABCA3上解离,但共定位于质膜和内体网络。表达hSP-C I73T 的细胞的胞浆绿色荧光蛋白/微管相关蛋白1轻链3(LC3)囊泡的大小和数量增加,其中一些与该基因的红色荧光蛋白共标记dsRed / hSP-C I73T 。通过透射电镜观察,hSP-C I73T 细胞含有异常大的自噬泡,其中含有细胞器和蛋白质性碎片,这在SFTPC I73T患者的肺活检中明显改变了肺泡2型细胞的超微结构变化。从生化角度看,hSP-C I73T 细胞表现出Atg8 / LC3,SQSTM1 / p62和Rab7的表达增加,这与自噬空泡成熟中的远端阻滞一致,这通过使用巴氟霉素A1和雷帕霉素的通量研究得到证实。从功能上讲,hSP-C I73T 细胞对易于聚集的亨廷顿蛋白-1报告基因底物的降解能力受损。自噬依赖性蛋白稳定的破坏伴随着线粒体生物量和帕金蛋白表达的增加以及线粒体膜电位的降低。我们得出的结论是,hSP-C I73T 诱导了巨噬细胞依赖的蛋白固定和线粒体吞噬的获得性阻滞,这可能导致肺上皮细胞对第二次损伤的易感性增加。

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