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热休克蛋白 90 调节人类细胞中 CAG 重复不稳定。

Hsp90 modulates CAG repeat instability in human cells.

机构信息

Human Genome Sequencing Center, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.

出版信息

Cell Stress Chaperones. 2010 Sep;15(5):753-9. doi: 10.1007/s12192-010-0191-0. Epub 2010 Apr 8.

Abstract

The Hsp90 molecular chaperone has been implicated as a contributor to evolution in several organisms by revealing cryptic variation that can yield dramatic phenotypes when the chaperone is diverted from its normal functions by environmental stress. In addition, as a cancer drug target, Hsp90 inhibition has been documented to sensitize cells to DNA-damaging agents, suggesting a function for Hsp90 in DNA repair. Here we explore the potential role of Hsp90 in modulating the stability of nucleotide repeats, which in a number of species, including humans, exert subtle and quantitative consequences for protein function, morphological and behavioral traits, and disease. We report that impairment of Hsp90 in human cells induces contractions of CAG repeat tracks by tenfold. Inhibition of the recombinase Rad51, a downstream target of Hsp90, induces a comparable increase in repeat instability, suggesting that Hsp90-enabled homologous recombination normally functions to stabilize CAG repeat tracts. By contrast, Hsp90 inhibition does not increase the rate of gene-inactivating point mutations. The capacity of Hsp90 to modulate repeat-tract lengths suggests that the chaperone, in addition to exposing cryptic variation, might facilitate the expression of new phenotypes through induction of novel genetic variation.

摘要

热休克蛋白 90(Hsp90)分子伴侣被认为是几种生物体进化的贡献者,它揭示了潜在的变异,当环境压力使伴侣蛋白偏离正常功能时,这些变异可能产生显著的表型。此外,作为一种癌症药物靶点,Hsp90 的抑制已被证明能使细胞对 DNA 损伤剂敏感,这表明 Hsp90 在 DNA 修复中具有功能。在这里,我们探索了 Hsp90 调节核苷酸重复稳定性的潜在作用,在包括人类在内的许多物种中,核苷酸重复对蛋白质功能、形态和行为特征以及疾病都有微妙和定量的影响。我们报告称,在人类细胞中破坏 Hsp90 会导致 CAG 重复序列的收缩增加十倍。抑制 Hsp90 的下游靶标重组酶 Rad51 也会导致重复不稳定的类似增加,这表明 Hsp90 介导的同源重组通常能稳定 CAG 重复序列。相比之下,Hsp90 的抑制并不会增加导致基因失活的点突变率。Hsp90 调节重复序列长度的能力表明,伴侣蛋白除了暴露潜在的变异外,还可能通过诱导新的遗传变异来促进新表型的表达。

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