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SF3b155内多个U2AF65结合位点:前体mRNA剪接因子间蛋白质-蛋白质相互作用的热力学和光谱学特征

Multiple U2AF65 binding sites within SF3b155: thermodynamic and spectroscopic characterization of protein-protein interactions among pre-mRNA splicing factors.

作者信息

Thickman Karen R, Swenson Matthew C, Kabogo Joseph M, Gryczynski Zygmunt, Kielkopf Clara L

机构信息

Department of Biochemistry and Molecular Biology, Bloomberg School of Public Health, Johns Hopkins University, Baltimore, MD 21205, USA.

出版信息

J Mol Biol. 2006 Feb 24;356(3):664-83. doi: 10.1016/j.jmb.2005.11.067. Epub 2005 Dec 7.

Abstract

Essential, protein-protein complexes between the large subunit of the U2 small nuclear RNA auxiliary factor (U2AF65) with the splicing factor 1 (SF1) or the spliceosomal component SF3b155 are exchanged during a critical, ATP-dependent step of pre-mRNA splicing. Both SF1 and the N-terminal domain of SF3b155 interact with a U2AF homology motif (UHM) of U2AF65. SF3b155 contains seven tryptophan-containing sites with sequence similarity to the previously characterized U2AF65-binding domain of SF1. We show that the SF3b155 domain lacks detectable secondary structure using circular dichroism spectroscopy, and demonstrate that five of the tryptophan-containing SF3b155 sites are recognized by the U2AF65-UHM using intrinsic tryptophan fluorescence experiments with SF3b155 variants. When compared with SF1, similar spectral shifts and sequence requirements indicate that U2AF65 interactions with each of the SF3b155 sites are similar to the minimal SF1 site. However, thermodynamic comparison of SF1 or SF3b155 proteins with minimal peptides demonstrates that formation the SF1/U2AF65 complex is likely to affect regions of SF1 beyond the previously identified, linear interaction site, in a remarkably distinct manner from the local U2AF65 binding mode of SF3b155. Furthermore, the complex of the SF1/U2AF65 interacting domains is stabilized by 3.3 kcal mol-1 relative to the complex of the SF3b155/U2AF65 interacting domains, consistent with the need for ATP hydrolysis to drive exchange of these partners during pre-mRNA splicing. We propose that the multiple U2AF65 binding sites within SF3b155 regulate conformational rearrangements during spliceosome assembly. Comparison of the SF3b155 sites defines an (R/K)nXRW(DE) consensus sequence for predicting U2AF65-UHM ligands from genomic sequences, where parentheses denote residues that contribute to, but are not required for binding.

摘要

在mRNA前体剪接的一个关键的、ATP依赖步骤中,U2小核RNA辅助因子(U2AF65)的大亚基与剪接因子1(SF1)或剪接体成分SF3b155之间的必需蛋白质-蛋白质复合物会发生交换。SF1和SF3b155的N端结构域均与U2AF65的U2AF同源基序(UHM)相互作用。SF3b155包含七个含色氨酸的位点,其序列与先前鉴定的SF1的U2AF65结合结构域相似。我们利用圆二色光谱表明SF3b155结构域缺乏可检测到的二级结构,并通过对SF3b155变体进行固有色氨酸荧光实验证明,含色氨酸的SF3b155位点中有五个被U2AF65-UHM识别。与SF1相比,相似的光谱位移和序列要求表明,U2AF65与每个SF3b155位点的相互作用类似于最小的SF1位点。然而,SF1或SF3b155蛋白与最小肽段的热力学比较表明,SF1/U2AF65复合物的形成可能会以与SF3b155的局部U2AF65结合模式截然不同的方式影响SF1中先前确定的线性相互作用位点之外的区域。此外,相对于SF3b155/U2AF65相互作用结构域的复合物,SF1/U2AF65相互作用结构域的复合物稳定了3.3千卡/摩尔,这与在mRNA前体剪接过程中需要ATP水解来驱动这些伴侣的交换是一致的。我们提出,SF3b155内的多个U2AF65结合位点在剪接体组装过程中调节构象重排。对SF3b155位点的比较定义了一个(R/K)nXRW(DE)共有序列,用于从基因组序列中预测U2AF65-UHM配体,其中括号表示对结合有贡献但不是结合所必需的残基。

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