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酵母帽结合复合体阻碍切割因子IA募集至弱终止位点。

Yeast cap binding complex impedes recruitment of cleavage factor IA to weak termination sites.

作者信息

Wong Chi-Ming, Qiu Hongfang, Hu Cuihua, Dong Jinsheng, Hinnebusch Alan G

机构信息

Laboratory of Gene Regulation and Development, National Institute of Child Health and Human Development, NIH, Bethesda, Maryland 20892, USA.

出版信息

Mol Cell Biol. 2007 Sep;27(18):6520-31. doi: 10.1128/MCB.00733-07. Epub 2007 Jul 16.

Abstract

Nuclear cap binding complex (CBC) is recruited cotranscriptionally and stimulates spliceosome assembly on nascent mRNAs; however, its possible functions in regulating transcription elongation or termination were not well understood. We show that, while CBC appears to be dispensable for normal rates and processivity of elongation by RNA polymerase II (Pol II), it plays a direct role in preventing polyadenylation at weak termination sites. Similarly to Npl3p, with which it interacts, CBC suppresses the weak terminator of the gal10-Delta56 mutant allele by impeding recruitment of termination factors Pcf11p and Rna15p (subunits of cleavage factor IA [CF IA]) and does so without influencing Npl3p occupancy at the termination site. Importantly, deletion of CBC subunits or NPL3 also increases termination at a naturally occurring weak poly(A) site in the RNA14 coding sequences. We also show that CBC is most likely recruited directly to the cap of nascent transcripts rather than interacting first with transcriptional activators or the phosphorylated C-terminal domain of Pol II. Thus, our findings illuminate the mechanism of CBC recruitment and extend its function in Saccharomyces cerevisiae beyond mRNA splicing and degradation of aberrant nuclear mRNAs to include regulation of CF IA recruitment at poly(A) selection sites.

摘要

核帽结合复合体(CBC)在转录共起始阶段被招募,并刺激新生mRNA上剪接体的组装;然而,其在调节转录延伸或终止方面的潜在功能尚未得到充分了解。我们发现,虽然CBC对于RNA聚合酶II(Pol II)的正常延伸速率和持续性似乎是可有可无的,但它在防止弱终止位点的聚腺苷酸化中发挥直接作用。与它相互作用的Npl3p类似,CBC通过阻碍终止因子Pcf11p和Rna15p(切割因子IA [CF IA]的亚基)的募集来抑制gal10 - Delta56突变等位基因的弱终止子,并且这样做不会影响Npl3p在终止位点的占据。重要的是,CBC亚基或NPL3的缺失也会增加RNA14编码序列中天然存在的弱聚腺苷酸化位点的终止。我们还表明,CBC最有可能直接被招募到新生转录本的帽上,而不是首先与转录激活因子或Pol II的磷酸化C末端结构域相互作用。因此,我们的研究结果阐明了CBC的招募机制,并将其在酿酒酵母中的功能扩展到mRNA剪接和异常核mRNA降解之外,包括在聚腺苷酸化位点对CF IA招募的调节。

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