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POS-1 的 CCCH 型串联锌指结构域的结构与动态及其对 RNA 结合特异性的影响。

Structure and Dynamics of the CCCH-Type Tandem Zinc Finger Domain of POS-1 and Implications for RNA Binding Specificity.

机构信息

Department of Biochemistry and Molecular Biotechnology, University of Massachusetts Chan Medical School, Worcester, Massachusetts 01605, United States.

出版信息

Biochemistry. 2024 Oct 15;63(20):2632-2647. doi: 10.1021/acs.biochem.4c00259. Epub 2024 Sep 25.

Abstract

CCCH-type tandem zinc finger (TZF) motifs are found in many RNA-binding proteins involved in regulating mRNA stability, translation, and splicing. In , several RNA-binding proteins that regulate embryonic development and cell fate determination contain CCCH TZF domains, including POS-1. Previous biochemical studies have shown that despite high levels of sequence conservation, POS-1 recognizes a broader set of RNA sequences compared to the human homologue tristetraprolin. However, the molecular basis of these differences remains unknown. In this study, we refined the consensus RNA sequence and determined the differing binding specificities of the two zinc fingers of POS-1. We also determined the solution structure and characterized the internal dynamics of the TZF domain of POS-1. From the structure, we identified unique features that define the RNA binding specificity of POS-1. We also observed that the TZF domain of POS-1 is in equilibrium between interconverting conformations. Transitions between these conformations require internal motions involving many residues with correlated dynamics in each ZF. We propose that the correlated dynamics are necessary to allow allosteric communication between the nucleotide-binding pockets observed in the N-terminal ZF. Our study shows that both the structure and conformational plasticity of POS-1 are important in ensuring recognition of its RNA binding targets.

摘要

CCCH 型串联锌指 (TZF) 基序存在于许多参与调节 mRNA 稳定性、翻译和剪接的 RNA 结合蛋白中。在 ,几种调节胚胎发育和细胞命运决定的 RNA 结合蛋白包含 CCCH TZF 结构域,包括 POS-1。先前的生化研究表明,尽管序列高度保守,但与人类同源物 tristetraprolin 相比,POS-1 识别的 RNA 序列范围更广。然而,这些差异的分子基础尚不清楚。在这项研究中,我们细化了共识 RNA 序列,并确定了 POS-1 的两个锌指的不同结合特异性。我们还确定了 POS-1 的 TZF 结构域的溶液结构并对其内部动力学进行了表征。从结构中,我们确定了独特的特征,这些特征定义了 POS-1 的 RNA 结合特异性。我们还观察到,POS-1 的 TZF 结构域在相互转化构象之间处于平衡状态。这些构象之间的转变需要涉及每个 ZF 中许多残基的内部运动,这些残基具有相关的动力学。我们提出,相关性是必需的,以允许在观察到的 N 端 ZF 中的核苷酸结合口袋之间进行变构通讯。我们的研究表明,POS-1 的结构和构象可塑性对于确保其 RNA 结合靶标的识别都很重要。

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