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Structure-system correlation identifies a gene regulatory Mediator submodule.

机译:结构系统相关性可识别基因调控介体子模块。

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摘要

A combination of crystallography, biochemistry, and gene expression analysis identifies the coactivator subcomplex Med8C/18/20 as a functionally distinct submodule of the Mediator head module. Med8C forms a conserved alpha-helix that tethers Med18/20 to the Mediator. Deletion of Med8C in vivo results in dissociation of Med18/20 from Mediator and in loss of transcription activity of extracts. Deletion of med8C, med18, or med20 causes similar changes in the yeast transcriptome, establishing Med8C/18/20 as a predominantly positive, gene-specific submodule required for low transcription levels of nonactivated genes, including conjugation genes. The presented structure-based system perturbation is superior to gene deletion analysis of gene regulation.
机译:晶体学,生物化学和基因表达分析的组合将共激活子亚复合物Med8C / 18/20鉴定为介体头模块的功能不同的亚模块。 Med8C形成一个保守的alpha螺旋,将Med18 / 20绑定到介体。体内Med8C的缺失导致Med18 / 20与介体的分离,并导致提取物的转录活性丧失。删除med8C,med18或med20会在酵母转录组中引起类似的变化,从而将Med8C / 18/20确定为低激活水平(包括缀合基因)的低转录水平所需的主要阳性,基因特异性子模块。提出的基于结构的系统扰动优于基因调控的基因缺失分析。

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