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酿酒酵母中RNA聚合酶II活性及Spt延伸因子与Spt表型和生长之间的关系

Relationships Between RNA Polymerase II Activity and Spt Elongation Factors to Spt- Phenotype and Growth in Saccharomyces cerevisiae.

作者信息

Cui Ping, Jin Huiyan, Vutukuru Manjula Ramya, Kaplan Craig D

机构信息

Department of Biochemistry and Biophysics, Texas A&M University, College Station, Texas 77843.

Department of Biochemistry and Biophysics, Texas A&M University, College Station, Texas 77843

出版信息

G3 (Bethesda). 2016 Aug 9;6(8):2489-504. doi: 10.1534/g3.116.030346.

Abstract

The interplay between adjacent transcription units can result in transcription-dependent alterations in chromatin structure or recruitment of factors that determine transcription outcomes, including the generation of intragenic or other cryptic transcripts derived from cryptic promoters. Mutations in a number of genes in Saccharomyces cerevisiae confer both cryptic intragenic transcription and the Suppressor of Ty (Spt(-)) phenotype for the lys2-128∂ allele of the LYS2 gene. Mutants that suppress lys2-128∂ allow transcription from a normally inactive Ty1 ∂ promoter, conferring a LYS(+) phenotype. The arrangement of transcription units at lys2-128∂ is reminiscent of genes containing cryptic promoters within their open reading frames. We set out to examine the relationship between RNA Polymerase II (Pol II) activity, functions of Spt elongation factors, and cryptic transcription because of the previous observation that increased-activity Pol II alleles confer an Spt(-) phenotype. We identify both cooperating and antagonistic genetic interactions between Pol II alleles and alleles of elongation factors SPT4, SPT5, and SPT6 We find that cryptic transcription at FLO8 and STE11 is distinct from that at lys2-128∂, though all show sensitivity to reduction in Pol II activity, especially the expression of lys2-128∂ found in Spt(-) mutants. We determine that the lys2-128∂ Spt(-) phenotypes for spt6-1004 and increased activity rpo21/rpb1 alleles each require transcription from the LYS2 promoter. Furthermore, we identify the Ty1 transcription start site (TSS) within the ∂ element as the position of Spt(-) transcription in tested Spt(-) mutants.

摘要

相邻转录单元之间的相互作用可导致染色质结构的转录依赖性改变,或决定转录结果的因子的募集,包括源自隐蔽启动子的基因内或其他隐蔽转录本的产生。酿酒酵母中多个基因的突变赋予了LYS2基因lys2 - 128∂等位基因隐蔽的基因内转录和Ty抑制子(Spt(-))表型。抑制lys2 - 128∂的突变体允许从正常无活性的Ty1∂启动子进行转录,赋予LYS(+)表型。lys2 - 128∂处转录单元的排列让人联想到在其开放阅读框内含有隐蔽启动子的基因。由于之前观察到活性增加的Pol II等位基因赋予Spt(-)表型,我们着手研究RNA聚合酶II(Pol II)活性、Spt延伸因子的功能与隐蔽转录之间的关系。我们确定了Pol II等位基因与延伸因子SPT4、SPT5和SPT6的等位基因之间的协同和拮抗遗传相互作用。我们发现,FLO8和STE11处的隐蔽转录与lys2 - 128∂处的不同,尽管所有这些都显示出对Pol II活性降低的敏感性,尤其是在Spt(-)突变体中发现的lys2 - 128∂的表达。我们确定,spt6 - 1004和活性增加的rpo21/rpb1等位基因的lys2 - 128∂ Spt(-)表型各自都需要从LYS2启动子进行转录。此外,我们确定∂元件内的Ty1转录起始位点(TSS)是测试的Spt(-)突变体中Spt(-)转录的位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a26/4978902/cfae77e06489/2489f1.jpg

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