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首页> 外文期刊>eLife journal >Insights into HIV-1 proviral transcription from integrative structure and dynamics of the Tat:AFF4:P-TEFb:TAR complex
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Insights into HIV-1 proviral transcription from integrative structure and dynamics of the Tat:AFF4:P-TEFb:TAR complex

机译:从Tat:AFF4:P-TEFb:TAR复合体的整合结构和动力学了解HIV-1前病毒的转录

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摘要

HIV-1 Tat hijacks the human superelongation complex (SEC) to promote proviral transcription. Here we report the 5.9 ? structure of HIV-1 TAR in complex with HIV-1 Tat and human AFF4, CDK9, and CycT1. The TAR central loop contacts the CycT1 Tat-TAR recognition motif (TRM) and the second Tat Zn2+-binding loop. Hydrogen-deuterium exchange (HDX) shows that AFF4 helix 2 is stabilized in the TAR complex despite not touching the RNA, explaining how it enhances TAR binding to the SEC 50-fold. RNA SHAPE and SAXS data were used to help model the extended (Tat Arginine-Rich Motif) ARM, which enters the TAR major groove between the bulge and the central loop. The structure and functional assays collectively support an integrative structure and a bipartite binding model, wherein the TAR central loop engages the CycT1 TRM and compact core of Tat, while the TAR major groove interacts with the extended Tat ARM.
机译:HIV-1 Tat劫持了人类超伸长复合物(SEC)以促进原病毒转录。在这里我们报告5.9吗? HIV-1 TAR的结构与HIV-1 Tat和人类AFF4,CDK9和CycT1形成复合体。 TAR中央环与CycT1 Tat-TAR识别基序(TRM)和第二个Tat Zn2 +结合环接触。氢-氘交换(HDX)表明AFF4螺旋2在TAR复合物中稳定,尽管不接触RNA,解释了它如何增强TAR与SEC结合50倍。 RNA SHAPE和SAXS数据用于帮助建模扩展的(Tat Arginine-Rich Motif)ARM,该ARM进入凸起和中央环之间的TAR主沟。结构和功能测定共同支持整体结构和两部分结合模型,其中TAR中央环与CycT1 TRM和Tat的紧实核接合,而TAR主沟与扩展的Tat ARM相互作用。

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