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Polyglutamine tracts as modulators of transcriptional activation from yeast to mammals

机译:Polyglutamine Tracts作为从酵母到哺乳动物的转录激活的调节剂

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摘要

Microsatellite repeats are genetically unstable and subject to expansion and shrinkage. A subset of them, triplet repeats, can occur within the coding region and specify homomeric tracts of amino acids. Polyglutamine (polyQ) tracts are enriched in eukaryotic regulatory proteins, notably transcription factors, and we had shown before that they can contribute to transcriptional activation in mammalian cells. Here we generalize this finding by also including evolutionarily divergent organisms, namely, Drosophila and baker's yeast. In all three systems, Gal4-based model transcription factors were more active if they harbored a polyQ tract, and the activity depended on the length of the tract. By contrast, a polyserine tract was inactive. PolyQs acted from either an internal or a C-terminal position, thus ruling out a merely structural 'linker' effect. Finally, a two-hybrid assay in mammalian cells showed that polyQ tracts can interact with each other, supporting the concept that a polyQ-containing transcription factor can recruit other factors with polyQ tracts or glutamine-rich activation domains. The widespread occurrence of polyQ repeats in regulatory proteins suggests a beneficial role; in addition to the contribution to transcriptional activity, their genetic instability might help a species to adapt to changing environmental conditions in a potentially reversible manner.
机译:微卫星重复是遗传上不稳定的并且受扩张和收缩。它们的子集,三重态重复​​,可以在编码区域内发生,并指定氨基酸的均匀簇。聚谷氨酰胺(PolyQ)串在真核调节蛋白中富集,特别是转录因子,我们在哺乳动物细胞中有助于转录活化。在这里,我们还通过包括进化的发散生物,即果蝇和面包酵母的酵母,概括了这一发现。在所有三种系统中,如果覆盖多元道,基于Gal4的模型转录因子更活跃,并且活动依赖于道路的长度。相比之下,多晶片是无活性的。 PolyQs作用于内部或C末端位置,从而统治仅仅是结构的“连接器”的效果。最后,哺乳动物细胞中的双杂合物测定表明,多元尸体可以相互作用,支持含PolyQ的转录因子可以招募多元的转录因子或富含谷氨酰胺的活化结构域的概念。在调节蛋白中的PolyQ重复的广泛发生表明了有益的作用;除了对转录活动的贡献之外,它们的遗传不稳定可能有助于一种物种,以适应不可逆转的方式改变环境条件。

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