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Cus2 enforces the first ATP-dependent step of splicing by binding to yeast SF3b1 through a UHM–ULM interaction

机译:Cus2通过UHM-ULM相互作用与酵母SF3b1结合从而实现了第一道ATP依赖性的剪接步骤

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摘要

Stable recognition of the intron branchpoint (BP) by the U2 snRNP to form the pre-spliceosome is the first ATP-dependent step of splicing. Genetic and biochemical data from yeast indicate that Cus2 aids U2 snRNA folding into the stem IIa conformation prior to pre-spliceosome formation. Cus2 must then be removed by an ATP-dependent function of Prp5 before assembly can progress. However, the location from which Cus2 is displaced and the nature of its binding to the U2 snRNP are unknown. Here, we show that Cus2 contains a conserved UHM (U2AF homology motif) that binds Hsh155, the yeast homolog of human SF3b1, through a conserved ULM (U2AF ligand motif). Mutations in either motif block binding and allow pre-spliceosome formation without ATP. A 2.0 Å resolution structure of the Hsh155 ULM in complex with the UHM of Tat-SF1, the human homolog of Cus2, and complementary binding assays show that the interaction is highly similar between yeast and humans. Furthermore, we show that Tat-SF1 can replace Cus2 function by enforcing ATP dependence of pre-spliceosome formation in yeast extracts. Cus2 is removed before pre-spliceosome formation, and both Cus2 and its Hsh155 ULM binding site are absent from available cryo-EM structure models. However, our data are consistent with the apparent location of the disordered Hsh155 ULM between the U2 stem–loop IIa and the HEAT repeats of Hsh155 that interact with Prp5. We propose a model in which Prp5 uses ATP to remove Cus2 from Hsh155 such that extended base-pairing between U2 snRNA and the intron BP can occur.
机译:U2 snRNP对形成内剪接体的内含子分支点(BP)的稳定识别是剪接的第一个ATP依赖性步骤。来自酵母的遗传和生化数据表明,Cus2在剪接体形​​成之前帮助U2 snRNA折叠成茎IIa构象。然后必须通过Prp5的ATP依赖性功能将Cus2除去,然后才能进行组装。但是,Cus2的置换位置及其与U2 snRNP的结合性质尚不清楚。在这里,我们显示Cus2包含一个保守的UHM(U2AF同源性基序),它通过一个保守的ULM(U2AF配体基序)与Hsh155(人SF3b1的酵母同源物)结合。任一基序中的突变均可阻止结合,并允许无ATP的前剪体形成。 Hsh155 ULM的2.0Å分辨率结构与Tat-SF1的UHM,Cus2的人类同源物复合,以及互补结合测定表明,酵母与人之间的相互作用高度相似。此外,我们表明,Tat-SF1可以通过增强酵母提取物中前剪接体形成的ATP依赖性来取代Cus2功能。 Cus2在剪接体形​​成之前就已被除去,而可用的cryo-EM结构模型中都没有Cus2及其Hsh155 ULM结合位点。但是,我们的数据与无序的Hsh155 ULM在U2茎环IIa和与Prp5相互作用的Hsh155的HEAT重复序列之间的明显位置一致。我们提出了一个模型,其中Prp5使用ATP从Hsh155中去除Cus2,从而在U2 snRNA和内含子BP之间发生扩展的碱基配对。

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