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Structure and RNA interactions of the N-terminal RRM domains of PTB

机译:PTB N末端RRM结构域的结构和RNA相互作用

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摘要

The polypyrimidine tract binding protein (PTB) is an important regulator of alternative splicing that also affects mRNA localization, stabilization, polyadenylation, and translation. NMR structural analysis of the N-terminal half of PTB (residues 55-301) shows a canonical structure for RRM1 but reveals novel extensions to the beta strands and C terminus of RRM2 that significantly modify the beta sheet RNA binding surface. Although PTB contains four RNA recognition motifs (RRMs), it is widely held that only RRMs 3 and 4 are involved in RNA binding and that RRM2 mediates homodimerization. However, we show here not only that the RRMs 1 and 2 contribute substantially to RNA binding but also that full-length PTB is monomeric, with an elongated structure determined by X-ray solution scattering that is consistent with a linear arrangement of the constituent RRMs. These new insights into the structure and RNA binding properties of PTB suggest revised models of its mechanism of action.
机译:聚嘧啶束结合蛋白(PTB)是替代剪接的重要调节剂,它也影响mRNA的定位,稳定化,聚腺苷酸化和翻译。 PTB N末端一半的NMR结构分析(残基55-301)显示了RRM1的规范结构,但揭示了RRM2的β链和C末端的新型延伸,这些延伸显着修饰了β折叠RNA结合表面。尽管PTB包含四个RNA识别基序(RRM),但普遍认为只有RRM 3和4参与RNA结合,并且RRM2介导同源二聚化。但是,我们在这里不仅显示RRM 1和RRM 2基本上有助于RNA结合,而且全长PTB是单体的,通过X射线溶液散射确定的细长结构与组成RRM的线性排列一致。这些对PTB的结构和RNA结合特性的新见解提出了其作用机制的修订模型。

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