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Individualized management of genetic diversity in Niemann-Pick C1 through modulation of the Hsp70 chaperone system

机译:通过调制HSP70伴侣系统,尼莫曼镐C1遗传多样性的个性化管理

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摘要

Genetic diversity provides a rich repository for understanding the role of proteostasis in the management of the protein fold in human biology. Failure in proteostasis can trigger multiple disease states, affecting both human health and lifespan. Niemann-Pick C1 (NPC1) disease is a rare genetic disorder triggered by mutations in NPC1, a multi-spanning transmembrane protein that is trafficked through the exocytic pathway to late endosomes (LE) and lysosomes (Ly) (LE/Ly) to globally manage cholesterol homeostasis. Defects triggered by >300 NPC1 variants found in the human population inhibit export of NPC1 protein from the endoplasmic reticulum (ER) and/or function in downstream LE/Ly, leading to cholesterol accumulation and onset of neurodegeneration in childhood. We now show that the allosteric inhibitor JG98, that targets the cytosolic Hsp70 chaperone/co-chaperone complex, can significantly improve the trafficking and post-ER protein level of diverse NPC1 variants. Using a new approach to model genetic diversity in human disease, referred to as variation spatial profiling, we show quantitatively how JG98 alters the Hsp70 chaperone/co-chaperone system to adjust the spatial covariance (SCV) tolerance and set-points on an amino acid residue-by-residue basis in NPC1 to differentially regulate variant trafficking, stability, and cholesterol homeostasis, results consistent with the role of BCL2-associated athanogene family co-chaperones in managing the folding status of NPC1 variants. We propose that targeting the cytosolic Hsp70 system by allosteric regulation of its chaperone/co-chaperone based client relationships can be used to adjust the SCV tolerance of proteostasis buffering capacity to provide an approach to mitigate systemic and neurological disease in the NPC1 population.
机译:遗传多样性提供了丰富的储存库,用于了解蛋白质在人体生物学中蛋白质折叠管理中的作用。蛋白质失败可以触发多种疾病状态,影响人类健康和寿命。 Niemann-Pick C1(NPC1)疾病是NPC1中突变引发的罕见遗传疾病,这是一种多跨越跨膜蛋白,这些跨膜蛋白被贩运通过外血清途径(LE)和赖环瘤(LY)(LY / LY)转化为全球管理胆固醇稳态。在人口中发现的300个NPC1变体触发的缺陷抑制来自内质网(ER)的NPC1蛋白的出口和/或在下游LE / LY中的功能,导致儿童时期的胆固醇积累和神经变性的发作。我们现在表明,靶向细胞溶质HSP70伴侣/共伴侣复合物的变构抑制剂JG98可以显着改善贩运和后蛋白水平的不同NPC1变体。利用新方法在人类疾病中模拟遗传多样性,称为变异空间分析,我们如何定量显示JG98改变HSP70伴侣/共伴侣系统,以调整氨基酸上的空间协方差(SCV)耐受性和设定点逐残留在NPC1中的基础,以差异调节变体贩运,稳定性和胆固醇稳态,结果与BCL2相关的奥乙烯家族共伴侣在管理NPC1变体的折叠状态方面的作用一致。我们提出通过对其伴侣/共伴侣基的客户关系的构建调节靶向细胞溶质HSP70系统来调节蛋白质棘上缓冲能力的SCV耐受性,以便在NPC1群体中减轻系统性和神经疾病的方法。

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