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Polyphosphate Stabilizes Protein Unfolding Intermediates as Soluble Amyloid Like Oligomers

机译:聚磷酸盐可稳定蛋白质折叠中间体如寡聚体一样的可溶性淀粉样蛋白

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摘要

Inorganic polyphosphate (polyP) constitutes one of the most conserved and ubiquitous molecules in biology. Recent work in bacteria demonstrated that polyP increases oxidative stress resistance by preventing stress-induced protein aggregation, and promotes biofilm formation by stimulating functional amyloid formation. To gain insights into these two seemingly contradictory functions of polyP, we investigated the effects of polyP on the folding model lactate dehydrogenase (LDH). We discovered that presence of polyP during the thermal unfolding process stabilizes folding intermediates of LDH as soluble micro-β-aggregates with amyloid-like properties. Size and heterogeneity of the oligomers formed in this process was dependent on the polyP chain length, with longer chains forming smaller, more homogenous complexes. This ability of polyP to stabilize thermally unfolded proteins even upon exposure to extreme temperatures, appears to contribute to the observed resistance of E. coli towards severe heat shock treatment. These results suggest that the working mechanism of polyP is the same for both soluble and amyloidogenic proteins, with the ultimate outcome likely being determined by a combination of polyP chain length and the client protein itself. They help to explain how polyP can simultaneously function as general stress protective chaperone and instigator of amyloidogenic processes in vivo.
机译:无机多磷酸盐(polyP)构成生物学中最保守和普遍存在的分子之一。细菌的最新研究表明,polyP通过防止应激诱导的蛋白质聚集来提高抗氧化应激能力,并通过刺激功能性淀粉样蛋白形成促进生物膜形成。为了深入了解polyP的这两个看似矛盾的功能,我们研究了polyP对折叠模型乳酸脱氢酶(LDH)的影响。我们发现,在热解折叠过程中polyP的存在稳定了LDH的折叠中间体,成为具有淀粉样性质的可溶性微β-聚集体。在此过程中形成的寡聚物的大小和异质性取决于polyP链的长度,较长的链形成较小,更均一的复合物。即使暴露于极端温度下,polyP仍具有稳定热解折叠蛋白的能力,这似乎有助于观察到的大肠杆菌对严重热激处理的抵抗力。这些结果表明,对于可溶性蛋白和淀粉样蛋白,polyP的工作机制是相同的,最终结果可能由polyP链长和客户蛋白本身共同决定。他们帮助解释了polyP如何同时充当体内的一般应激保护性伴侣和淀粉样蛋白形成过程的诱因。

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