Kaneko Syuzo, Chu Chun, Shatkin Aaron J, Manley James L
Department of Biological Sciences, Columbia University, New York, NY 10027, USA.
Proc Natl Acad Sci U S A. 2007 Nov 6;104(45):17620-5. doi: 10.1073/pnas.0708866104. Epub 2007 Oct 31.
Cap formation is the first step of pre-mRNA processing in eukaryotic cells. Immediately after transcription initiation, capping enzyme (CE) is recruited to RNA polymerase II (Pol II) by the phosphorylated carboxyl-terminal domain of the Pol II largest subunit (CTD), allowing cotranscriptional capping of the nascent pre-mRNA. Recent studies have indicated that CE affects transcription elongation and have suggested a checkpoint model in which cotranscriptional capping is a necessary step for the early phase of transcription. To investigate further the role of the CTD in linking transcription and processing, we generated a fusion protein of the mouse CTD with T7 RNA polymerase (CTD-T7 RNAP). Unexpectedly, in vitro transcription assays with CTD-T7 RNAP showed that CE promotes formation of DNA.RNA hybrids or R loops. Significantly, phosphorylation of the CTD was required for CE-dependent R-loop formation (RLF), consistent with a critical role for the CTD in CE recruitment to the transcription complex. The guanylyltransferase domain was necessary and sufficient for RLF, but catalytic activity was not required. In vitro assays with appropriate synthetic substrates indicate that CE can promote RLF independent of transcription. ASF/SF2, a splicing factor known to prevent RLF, and GTP, which affects CE conformation, antagonized CE-dependent RLF. Our findings suggest that CE can play a direct role in transcription by modulating displacement of nascent RNA during transcription.
帽结构形成是真核细胞中前体mRNA加工的第一步。转录起始后,帽结构酶(CE)通过RNA聚合酶II(Pol II)最大亚基的磷酸化羧基末端结构域(CTD)被招募到Pol II上,从而使新生的前体mRNA进行共转录加帽。最近的研究表明,CE会影响转录延伸,并提出了一种检查点模型,其中共转录加帽是转录早期的必要步骤。为了进一步研究CTD在连接转录和加工过程中的作用,我们构建了小鼠CTD与T7 RNA聚合酶的融合蛋白(CTD-T7 RNAP)。出乎意料的是,用CTD-T7 RNAP进行的体外转录分析表明,CE促进DNA.RNA杂交体或R环的形成。重要的是,CTD的磷酸化对于CE依赖性R环形成(RLF)是必需的,这与CTD在将CE招募到转录复合物中的关键作用一致。鸟苷酸转移酶结构域对于RLF是必需且足够的,但不需要催化活性。用合适的合成底物进行的体外分析表明,CE可以独立于转录促进RLF。ASF/SF2是一种已知可阻止RLF的剪接因子,而GTP会影响CE构象,二者均可拮抗CE依赖性RLF。我们的研究结果表明,CE可以通过调节转录过程中新生RNA的置换在转录中发挥直接作用。