Centro Andaluz de Biología Molecular y Medicina Regenerativa (CABIMER), Seville, Spain.
Mol Cell Biol. 2011 Feb;31(4):674-85. doi: 10.1128/MCB.01188-10. Epub 2010 Dec 13.
Formation of a ribonucleoprotein particle (mRNP) competent for export requires the coupling of transcription with mRNA processing and RNA export. A key link between these processes is provided by the THO complex. To progress in our understanding of this coupling, we have performed a search for suppressors of the transcription defect caused by the hpr1Δ mutation. This has permitted us to identify mutations in the genes for the RNA polymerase II mediator component Med10, the Sch9 protein kinase, and the Ypr045c protein. We report a role in transcription elongation for Ypr045c (Thp3) and the Csn12 component of the COP9 signalosome. Thp3 and Csn12 form a complex that is recruited to transcribed genes. Their mutations suppress the gene expression defects of THO complex mutants involved in mRNP biogenesis and export and show defects in mRNA accumulation. Transcription elongation impairment of thp3Δ mutants is shown by in vivo transcript run-on analysis performed in G-less systems. Thp3-Csn12 establishes a novel link between transcription and mRNA processing that opens new perspectives on our understanding of gene expression and reveals novel functions for a component of the COP9 signalosome. Thp3-Csn12 also copurifies with ribosomal proteins, which opens the possibility that it has other functions in addition to transcription.
形成有能力进行输出的核糖核蛋白颗粒(mRNP)需要将转录与 mRNA 处理和 RNA 输出偶联。这些过程之间的一个关键联系是由 THO 复合物提供的。为了深入了解这种偶联,我们进行了搜索以寻找 hpr1Δ 突变引起的转录缺陷的抑制子。这使我们能够鉴定 RNA 聚合酶 II 中介成分 Med10、Sch9 蛋白激酶和 Ypr045c 蛋白的基因突变。我们报告了 Ypr045c(Thp3)和 COP9 信号osome 的 Csn12 成分在转录延伸中的作用。Thp3 和 Csn12 形成一个复合物,被招募到转录基因上。它们的突变抑制了参与 mRNP 生物发生和输出的 THO 复合物突变体的基因表达缺陷,并显示出 mRNA 积累的缺陷。通过在 G 缺失系统中进行体内转录物运行分析,显示了 thp3Δ 突变体的转录延伸损伤。Thp3-Csn12 在转录和 mRNA 处理之间建立了新的联系,为我们对基因表达的理解开辟了新的视角,并揭示了 COP9 信号osome 成分的新功能。Thp3-Csn12 还与核糖体蛋白共纯化,这使得它除了转录之外还具有其他功能成为可能。