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HIV 剪接位点 A3 调控区的编码构象动力学:对 hnRNP 剪接辅助因子差异结合的影响。

Encoded Conformational Dynamics of the HIV Splice Site A3 Regulatory Locus: Implications for Differential Binding of hnRNP Splicing Auxiliary Factors.

机构信息

Department of Chemistry, Case Western Reserve University, Cleveland, OH 44106, United States. Electronic address: https://twitter.com/LiangYuanChiu1.

UNC Lineberger Comprehensive Cancer Center, University of North Carolina, Chapel Hill, NC 27599, United States.

出版信息

J Mol Biol. 2022 Sep 30;434(18):167728. doi: 10.1016/j.jmb.2022.167728. Epub 2022 Jul 21.

Abstract

Alternative splicing of the HIV transcriptome is controlled through cis regulatory elements functioning as enhancers or silencers depending on their context and the type of host RNA binding proteins they recruit. Splice site acceptor A3 (ssA3) is one of the least used acceptor sites in the HIV transcriptome and its activity determines the levels of tat mRNA. Splice acceptor 3 is regulated by a combination of cis regulatory sequences, auxiliary splicing factors, and presumably RNA structure. The mechanisms by which these multiple regulatory components coordinate to determine the frequency in which ssA3 is utilized is poorly understood. By NMR spectroscopy and phylogenetic analysis, we show that the ssA3 regulatory locus is conformationally heterogeneous and that the sequences that encompass the locus are conserved across most HIV isolates. Despite the conformational heterogeneity, the major stem loop (A3SL1) observed in vitro folds to base pair the Polypyrimdine Tract (PPyT) to the Exon Splicing Silencer 2p (ESS2p) element and to a conserved downstream linker. The 3D structure as determined by NMR spectroscopy further reveals that the A3 consensus cleavage site is embedded within a unique stereochemical environment within the apical loop, where it is surrounded by alternating base-base interactions. Despite being described as a receptor for hnRNP H, the ESS2p element is sequestered by base pairing to the 3' end of the PPyT and within this context it cannot form a stable complex with hnRNP H. By comparison, hnRNP A1 directly binds to the A3 consensus cleavage site located within the apical loop, suggesting that it can directly modulate U2AF assembly. Sequence mutations designed to destabilize the PPyT:ESS2p helix results in an increase usage of ssA3 within HIV-infected cells, consistent with the PPyT becoming more accessible for U2AF recognition. Additional mutations introduced into the downstream ESS2 element synergize with ESS2p to cause further increases in ssA3 usage. When taken together, our work provides a unifying picture by which cis regulatory sequences, splicing auxiliary factors and RNA structure cooperate to provide stringent control over ssA3. We describe this as the pair-and-lock mechanism to restrict access of the PPyT, and posit that it operates to regulate a subset of the heterogenous structures encompassing the ssA3 regulatory locus.

摘要

HIV 转录本的可变剪接通过顺式调控元件控制,这些元件根据其上下文和募集的宿主 RNA 结合蛋白的类型,作为增强子或沉默子发挥作用。剪接接受位点 A3(ssA3) 是 HIV 转录本中使用最少的接受位点之一,其活性决定了 tat mRNA 的水平。剪接受体位点 3 受顺式调控序列、辅助剪接因子的组合调节,推测还受 RNA 结构调节。这些多种调控成分协调决定 ssA3 利用频率的机制尚不清楚。通过 NMR 光谱和系统发育分析,我们表明,ssA3 调控位点的构象是异质的,并且包含该位点的序列在大多数 HIV 分离株中是保守的。尽管存在构象异质性,但在体外观察到的主要茎环 (A3SL1) 折叠使多嘧啶区 (PPyT) 与外显子剪接沉默子 2p(ESS2p) 元件配对,并与保守的下游连接子配对。通过 NMR 光谱确定的 3D 结构进一步表明,A3 保守切割位点嵌入在顶端环内的独特立体化学环境中,在该环境中,它被交替的碱基-碱基相互作用包围。尽管 ESS2p 元件被描述为 hnRNP H 的受体,但它通过与 PPyT 3' 端的碱基配对而被隔离,并且在这种情况下,它不能与 hnRNP H 形成稳定的复合物。相比之下,hnRNP A1 直接结合到位于顶端环内的 A3 保守切割位点,表明它可以直接调节 U2AF 的组装。设计用于破坏 PPyT:ESS2p 螺旋的序列突变导致 HIV 感染细胞中 ssA3 的使用增加,这与 PPyT 变得更容易被 U2AF 识别一致。引入到下游 ESS2 元件中的额外突变与 ESS2p 协同作用,导致 ssA3 使用进一步增加。总的来说,我们的工作提供了一个统一的图景,即顺式调控序列、剪接辅助因子和 RNA 结构通过合作对 ssA3 进行严格控制。我们将其描述为限制 PPyT 进入的配对锁定机制,并假设它用于调节包含 ssA3 调控位点的异质结构的子集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0efd/9945881/009722eee80f/nihms-1869426-f0001.jpg

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