首页> 外文期刊>The biochemical journal >The chaperone proteins HSP70, HSP40/DnaJ and GRP78/BiP suppress misfolding and formation of β-sheet-containing aggregates by human amylin: a potential role for defective chaperone biology in Type?2 diabetes
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The chaperone proteins HSP70, HSP40/DnaJ and GRP78/BiP suppress misfolding and formation of β-sheet-containing aggregates by human amylin: a potential role for defective chaperone biology in Type?2 diabetes

机译:伴侣蛋白HSP70,HSP40 / DnaJ和GRP78 / BiP抑制人胰岛淀粉样多肽折叠和形成含β-折叠的聚集体:在2型糖尿病中伴侣蛋白生物学缺陷的潜在作用

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pMisfolding of the islet β-cell peptide hA (human amylin) into β-sheet-containing oligomers is linked to β-cell apoptosis and the pathogenesis of T2DM (Type 2 diabetes mellitus). In the present study, we have investigated the possible effects on hA misfolding of the chaperones HSP (heat-shock protein) 70, GRP78/BiP (glucose-regulated protein of 78 kDa/immunoglobulin heavy-chain-binding protein) and HSP40/DnaJ. We demonstrate that hA underwent spontaneous time-dependent β-sheet formation and aggregation by thioflavin-T fluorescence in solution, whereas rA (rat amylin) did not. HSP70, GRP78/BiP and HSP40/DnaJ each independently suppressed hA misfolding. Maximal molar protein/hA ratios at which chaperone activity was detected were 1:200 (HSP70, HSP40/DnaJ and GRP78/BiP). By contrast, none of the chaperones modified the secondary structure of rA. hA, but not rA, was co-precipitated independently with HSP70 and GRP78/BiP by anti-amylin antibodies. As these effects occur at molar ratios consistent with chaperone binding to relatively rare misfolded hA species, we conclude that HSP70 and GRP78/BiP can detect and bind misfolded hA oligomers, thereby effectively protecting hA against bulk misfolding and irreversible aggregation. Defective β-cell chaperone biology could contribute to hA misfolding and initiation of apoptosis in T2DM./p
机译:胰岛β细胞肽hA(人胰岛淀粉样多肽)错误折叠成含β折叠的寡聚体与β细胞凋亡和T2DM(2型糖尿病)的发病机制有关。在本研究中,我们研究了伴侣蛋白HSP(热休克蛋白)70,GRP78 / BiP(葡萄糖调节蛋白78kDa /免疫球蛋白重链结合蛋白)和HSP40 / DnaJ。我们证明hA通过溶液中的硫代黄素-T荧光自发地发生时间依赖性的β-折叠形成和聚集,而rA(大鼠胰岛淀粉样多肽)则没有。 HSP70,GRP78 / BiP和HSP40 / DnaJ各自独立抑制hA错折叠。检测到伴侣活性的最大摩尔蛋白/ hA比为1:200(HSP70,HSP40 / DnaJ和GRP78 / BiP)。相比之下,没有任何伴侣分子修饰rA的二级结构。 hA而非rA通过抗淀粉样蛋白抗体与HSP70和GRP78 / BiP共同共沉淀。由于这些效应以与伴侣结合到相对罕见的错误折叠的hA物种的摩尔比一致的方式发生,因此我们得出结论,HSP70和GRP78 / BiP可以检测并结合错误折叠的hA低聚物,从而有效保护hA防止大量错误折叠和不可逆聚集。 β细胞伴侣生物学缺陷可能与T2DM中hA的错误折叠和细胞凋亡的启动有关。

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