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酵母模型用于多聚丙氨酸扩展聚集和毒性。

A yeast model for polyalanine-expansion aggregation and toxicity.

机构信息

Department of Pharmacology, University of Washington, Seattle, USA.

出版信息

Mol Biol Cell. 2011 Jun 15;22(12):1971-84. doi: 10.1091/mbc.E11-01-0037. Epub 2011 Apr 20.

Abstract

Nine human disorders result from the toxic accumulation and aggregation of proteins with expansions in their endogenous polyalanine (polyA) tracts. Given the prevalence of polyA tracts in eukaryotic proteomes, we wanted to understand the generality of polyA-expansion cytotoxicity by using yeast as a model organism. In our initial case, we expanded the polyA tract within the native yeast poly(Adenine)-binding protein Pab1 from 8A to 13A, 15A, 17A, and 20A. These expansions resulted in increasing formation of Pab1 inclusions, insolubility, and cytotoxicity that correlated with the length of the polyA expansion. Pab1 binds mRNA as part of its normal function, and disrupting RNA binding or altering cytoplasmic mRNA levels suppressed the cytotoxicity of 17A-expanded Pab1, indicating a requisite role for mRNA in Pab1 polyA-expansion toxicity. Surprisingly, neither manipulation suppressed the cytotoxicity of 20A-expanded Pab1. Thus longer expansions may have a different mechanism for toxicity. We think that this difference underscores the potential need to examine the cytotoxic mechanisms of both long and short expansions in models of expansion disorders.

摘要

九种人类疾病是由蛋白质的毒性积累和聚集引起的,这些蛋白质的内源性多聚丙氨酸(polyA)序列发生了扩展。鉴于多聚 A 序列在真核生物蛋白质组中的普遍性,我们希望通过使用酵母作为模型生物来了解多聚 A 扩展的细胞毒性的普遍性。在我们的初始案例中,我们将天然酵母多聚(Adenine)结合蛋白 Pab1 中的多聚 A 序列从 8A 扩展到 13A、15A、17A 和 20A。这些扩展导致 Pab1 包涵体的形成、不溶性和细胞毒性增加,这与多聚 A 扩展的长度相关。Pab1 作为其正常功能的一部分结合 mRNA,而破坏 RNA 结合或改变细胞质 mRNA 水平则抑制了 17A 扩展的 Pab1 的细胞毒性,表明 mRNA 在 Pab1 多聚 A 扩展毒性中起必需作用。令人惊讶的是,这两种操作都没有抑制 20A 扩展的 Pab1 的细胞毒性。因此,更长的扩展可能具有不同的毒性机制。我们认为,这种差异强调了在扩展疾病模型中检查长扩展和短扩展的细胞毒性机制的潜在必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e147/3113764/c0e86cd510e6/1971fig1.jpg

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