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ATP gamma S stalls splicing after B complex formation but prior to spliceosome activation

机译:ATPγS在B复合物形成后但在剪接体激活之前停止拼接

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The ATP analog ATP gamma S inhibits pre-mRNA splicing in vitro, but there have been conflicting reports as to which step of splicing is inhibited by this small molecule and its inhibitory mechanism remains unclear. Here we have dissected the effect of ATP gamma S on pre-mRNA splicing in vitro. Addition of ATP gamma S to splicing extracts depleted of ATP inhibited both catalytic steps of splicing. At ATP gamma S concentrations >= 0.5 mM, precatalytic B complexes accumulate, demonstrating a block prior to or during the spliceosome activation stage. Affinity purification of the ATP gamma S-stalled B complexes (B-ATP gamma S) and subsequent characterization of their abundant protein components by 2D gel electrophoresis revealed that B-ATP gamma S complexes are compositionally more homogeneous than B complexes previously isolated in the presence of ATP. In particular, they contain little or no Prp19/CDC5L complex proteins, indicating that these proteins are recruited after assembly of the precatalytic spliceosome. Under the electron microscope, B-ATP gamma S complexes exhibit a morphology highly similar to B complexes, indicating that the ATP gamma S-induced block in the transformation of the B to B-act complex is not due to a major structural defect. Likely mechanisms whereby ATP gamma S blocks spliceosome assembly at the activation stage, including inhibition of the RNA helicase Brr2, are discussed. Given their more homogeneous composition, B complexes stalled by ATP gamma S may prove highly useful for both functional and structural analyses of the precatalytic spliceosome and its conversion into an activated B-act spliceosomal complex.
机译:ATP类似物ATPγS在体外抑制前mRNA剪接,但是关于这一小分子抑制了剪接的哪个步骤的报道相互矛盾,其抑制机理尚不清楚。在这里,我们已经剖析了ATPγS对体外预mRNA剪接的影响。在缺乏ATP的剪接提取物中添加ATPγS可以抑制剪接的两个催化步骤。在ATPγS浓度> = 0.5 mM时,预催化B络合物积聚,表明在剪接体活化阶段之前或期间发生了阻断。亲和纯化ATPγS沉淀的B复合物(B-ATPγS)并随后通过2D凝胶电泳表征其丰富的蛋白质成分表明,B-ATPγS复合物的成分比以前在存在下分离的B复合物更均匀ATP。特别是,它们几乎不含或不含Prp19 / CDC5L复合蛋白,表明这些蛋白是在预催化剪接体组装后募集的。在电子显微镜下,B-ATPγS配合物表现出与B配合物非常相似的形态,这表明ATPγS诱导的B向B-act配合物转化的阻滞不是由于主要的结构缺陷。讨论了ATPγS在激活阶段阻断剪接体组装的可能机制,包括抑制RNA解旋酶Brr2。鉴于它们的组成更加均一,被ATPγS拖延的B配合物可能被证明对前催化剪接体的功能和结构分析及其转化为活化的B-作用剪接体复合物非常有用。

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