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Specific G-quadruplex ligands modulate the alternative splicing of Bcl-X

机译:特定的g-quadruplex配体调制bcl-x的替代剪接

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摘要

Sequences with the potential to form RNA G-quadruplexes (G4s) are common in mammalian introns, especially in the proximity of the 5' splice site (5' SS). However, the difficulty of demonstrating that G4s form in pre-mRNA in functional conditions has meant that little is known about their effects ormechanisms of action. We have shown previously that two G4s form in Bcl-X pre-mRNA, one close to each of the two alternative 5' SS. If these G4s affect splicing but are in competition with other RNA structures or RNA binding proteins, then ligands that stabilize them would increase the proportion of Bcl-X premRNA molecules in which either or both G4s had formed, shifting Bcl-X splicing. We show here that a restricted set of G4 ligands do affect splicing, that their activity and specificity are strongly dependent on their structures and that they act independently at the two splice sites. One of the ligands, the ellipticine GQC-05, antagonizes the major 5' SS that expresses the anti-apoptotic isoform of Bcl-X and activates the alternative 5' SS that expresses a pro-apoptotic isoform. We propose mechanisms that would account for these see-saw effects and suggest that these effects contribute to the ability of GQC-05 to induce apoptosis.
机译:具有形成RNA G-四共混物(G4S)的电位的序列在哺乳动物内含子中常见,特别是在5'剪接部位(5'SS)的附近。然而,在功能性条件下证明在前mRNA中的G4s形式的难度意味着对其作用的效果令人满意。我们以前所示的是Bcl-x前mRNA中的两个G4s形式,一个接近两个替代5的5's。如果这些G4S影响拼接,但与其他RNA结构或RNA结合蛋白竞争,那么稳定它们的配体会增加BCL-X premRNA分子的比例,其中或两种G4s形成,移位Bcl-x剪接。我们在这里展示了一套受限制的G4配体确实影响拼接,它们的活动和特异性强烈依赖于其结构,并且它们在两个接头位点独立起作用。其中一种配体,椭圆形GQC-05,拮抗表达Bcl-X的抗凋亡同种型的主要5'ss并激活表达促凋亡同种型的替代5的SS。我们提出将考虑这些探测效果的机制,并表明这些影响有助于GQC-05诱导细胞凋亡的能力。

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  • 来源
    《Nucleic Acids Research》 |2018年第2期|共11页
  • 作者单位

    Univ Leicester Leicester Inst Struct &

    Chem Biol Leicester LE1 7RH Leics England;

    Univ Leicester Leicester Inst Struct &

    Chem Biol Leicester LE1 7RH Leics England;

    Univ Arizona Coll Pharm Tucson AZ 85721 USA;

    CSIR Indian Inst Chem Technol Fluoroorgan Div Hyderabad 500007 Telangana India;

    Univ Lorraine IMoPA Ingn Mol &

    Physiopathol Articulaire UMR 7365 CNRS Biopole 9 Ave Foret Haye F-54505 Vandoeuvre Les Nancy France;

    Univ Strathclyde Dept Pure &

    Appl Chem Glasgow G1 1XL Lanark Scotland;

    Univ Lorraine IMoPA Ingn Mol &

    Physiopathol Articulaire UMR 7365 CNRS Biopole 9 Ave Foret Haye F-54505 Vandoeuvre Les Nancy France;

    Univ Arizona Coll Pharm Tucson AZ 85721 USA;

    Univ Leicester Leicester Inst Struct &

    Chem Biol Leicester LE1 7RH Leics England;

    Univ Leicester Leicester Inst Struct &

    Chem Biol Leicester LE1 7RH Leics England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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