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Splicing Site Recognition by Synergy of Three Domains in Splicing Factor RBM10

机译:拼接因子RBM10中三个域的协同作用拼接现场识别

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摘要

Splicing factor RBM10 and its close homologues RBM5 and RBM6 govern the splicing of oncogenes such as Fas , NUMB, and Bcl-X . The molecular architecture of these proteins includes zinc fingers (ZnFs) and RNA recognition motifs (RRMs). Three of these domains in RBM10 that constitute the RNA binding part of this splicing factor were found to individually bind RNAs with micromolar affinities. It was thus of interest to further investigate the structural basis of the well-documented high-affinity RNA recognition by RMB10. Here, we investigated RNA binding by combinations of two or three of these domains and discovered that a polypeptide containing RRM1, ZnF1, and RRM2 connected by their natural linkers recognizes a specific sequence of the Fas exon 6 mRNA with an affinity of 20 nM. Nuclear magnetic resonance structures of the RBM10 domains RRM1 and ZnF1 and the natural V354del isoform of RRM2 further confirmed that the interactions with RNA are driven by canonical RNA recognition elements. The well-known high-fidelity RNA splice site recognition by RBM10, and probably by RBM5 and RBM6, can thus be largely rationalized by a cooperative binding action of RRM and ZnF domains.
机译:拼接因子RBM10及其近同系物RBM5和RBM6控制癌细胞,例如Fas,Numb和Bcl-x。这些蛋白质的分子结构包括锌指(ZnFS)和RNA识别基序(RRMS)。发现构成该剪接因子的RNA结合部分的RBM10中的三个域以单独结合rNA与微摩尔亲和力。因此,有目的是进一步调查通过人民币10元的人民币良好的高亲和力RNA识别的结构基础。这里,我们通过两种或三个结构的组合研究了RNA结合,并发现含有RRM1,ZnF1和RRM2的多肽通过其天然接头连接的多肽识别出Fas外显子6 mRNA的特定序列,其具有20nm的亲和力。 RBM10结构域的核磁共振结构RRM1和ZNF1和RRM2的天然V354DEL同种型进一步证实,通过规范RNA识别元件驱动与RNA的相互作用。因此,RBM10的众所周知的高保真RNA接头位点识别,并且可能通过RBM5和RBM6,因此可以通过RRM和ZNF结构域的协同结合作用来利用。

著录项

  • 来源
    《Biochemistry》 |2018年第10期|共5页
  • 作者单位

    Department of Integrative Structural and Computational Biology The Scripps Research Institute 10550 North Torrey Pines Road La Jolla California 92037 United States;

    Department of Integrative Structural and Computational Biology The Scripps Research Institute 10550 North Torrey Pines Road La Jolla California 92037 United States;

    Department of Integrative Structural and Computational Biology The Scripps Research Institute 10550 North Torrey Pines Road La Jolla California 92037 United States;

    Department of Integrative Structural and Computational Biology The Scripps Research Institute 10550 North Torrey Pines Road La Jolla California 92037 United States;

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  • 正文语种 eng
  • 中图分类 生物化学;
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