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[PIN+]ing down the mechanism of prion appearance

机译:[PIN +]沿朊病毒机构突出

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Prions are conformationally flexible proteins capable of adopting a native state and a spectrum of alternative states associated with a change in the function of the protein. These alternative states are prone to assemble into amyloid aggregates, which provide a structure for self-replication and transmission of the underlying conformer and thereby the emergence of a new phenotype. Amyloid appearance is a rare event in vivo, regulated by both the aggregation propensity of prion proteins and their cellular environment. How these forces normally intersect to suppress amyloid appearance and the ways in which these restrictions can be bypassed to create protein-only phenotypes remain poorly understood. The most widely studied and perhaps most experimentally tractable system to explore the mechanisms regulating amyloid appearance is the [PIN+] prion of Saccharomyces cerevisiae. [PIN+] is required for the appearance of the amyloid state for both native yeast proteins and for human proteins expressed in yeast. These observations suggest that [PIN+] facilitates the bypass of amyloid regulatory mechanisms by other proteins in vivo. Several models of prion appearance are compatible with current observations, highlighting the complexity of the process and the questions that must be resolved to gain greater insight into the mechanisms regulating these events.
机译:朊病毒是能够采用本地状态的柔性柔性蛋白质和与蛋白质功能的变化相关的替代状态。这些替代状态易于组装成淀粉样蛋白聚集体,其提供用于自复制和递送的底层塑壳的结构,从而产生新表型的出现。淀粉样蛋白外观是体内罕见的事件,通过朊病毒蛋白的聚集倾向和它们的细胞环境进行调节。这些力量通常与抑制淀粉样蛋白外观和这些限制可以绕过以产生蛋白质表型的方式仍然很差。研究最广泛的研究和最具实验性易易探索的机制调节淀粉样蛋白外观的机制是酿酒酵母的[PIN +]朊病毒。对于天然酵母蛋白和酵母表达的人蛋白质,淀粉样蛋白状态的外观需要[PIN +]。这些观察结果表明[PIN +]通过体内其他蛋白质促进淀粉样调节机制的旁路。若干朊病毒外观型族似乎与当前的观察兼容,突出了过程的复杂性和必须解决的问题,以便更加了解调节这些事件的机制。

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