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首页> 外文期刊>Cell Regulation >The SAGA complex, together with transcription factors and the endocytic protein Rvs167p, coordinates the reprofiling of gene expression in response to changes in sterol composition in Saccharomyces cerevisiae
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The SAGA complex, together with transcription factors and the endocytic protein Rvs167p, coordinates the reprofiling of gene expression in response to changes in sterol composition in Saccharomyces cerevisiae

机译:SAGA复合物与转录因子和内吞蛋白Rvs167p共同协调酿酒酵母中甾醇成分变化时基因表达的重塑

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Changes in cellular sterol species and concentrations can have profound effects on the transcriptional profile. In yeast, mutants defective in sterol biosynthesis show a wide range of changes in transcription, including a coinduction of anaerobic genes and ergosterol biosynthesis genes, biosynthesis of basic amino acids, and several stress genes. However the mechanisms underlying these changes are unknown. We identified mutations in the SAGA complex, a coactivator of transcription, which abrogate the ability to carry out most of these sterol-dependent transcriptional changes. In the erg3 mutant, the SAGA complex increases its occupancy time on many of the induced ergosterol and anaerobic gene promoters, increases its association with several relevant transcription factors and the SWI/SNF chromatin remodeling complex, and surprisingly, associates with an endocytic protein, Rvs167p, suggesting a moonlighting function for this protein in the sterol-regulated induction of the heat shock protein, HSP42 and HSP102 , mRNAs.
机译:细胞固醇种类和浓度的变化可对转录谱产生深远影响。在酵母中,固醇生物合成有缺陷的突变体显示出广泛的转录变化,包括厌氧基因和麦角固醇生物合成基因的共诱导,碱性氨基酸的生物合成以及一些胁迫基因。但是,这些变化的潜在机制尚不清楚。我们在SAGA复合体(转录的共激活因子)中鉴定了突变,这些突变消除了进行大多数这些依赖于甾醇的转录变化的能力。在erg3突变体中,SAGA复合物增加了其在许多诱导的麦角固醇和厌氧基因启动子上的占有时间,增加了与若干相关转录因子和SWI / SNF染色质重塑复合物的关联,并且令人惊讶地与内吞蛋白Rvs167p关联,表明该蛋白在甾醇调节的热休克蛋白HSP42和HSP102 mRNA中具有月光作用。

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