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解析铁硫锌指蛋白 CPSF30 的 RNA 结合特性。

Unraveling the RNA Binding Properties of the Iron-Sulfur Zinc Finger Protein CPSF30.

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland, Baltimore, Maryland 21201-1180, United States.

Department of Pharmaceutical Sciences, Wayne State University, Detroit, Michigan 48201, United States.

出版信息

Biochemistry. 2020 Mar 3;59(8):970-982. doi: 10.1021/acs.biochem.9b01065. Epub 2020 Feb 19.

Abstract

Cleavage and polyadenylation specificity factor 30 (CPSF30) is a "zinc finger" protein that plays a crucial role in the transition of pre-mRNA to RNA. CPSF30 contains five conserved CCCH domains and a CCHC "zinc knuckle" domain. CPSF30 activity is critical for pre-mRNA processing. A truncated form of the protein, in which only the CCCH domains are present, has been shown to specifically bind AU-rich pre-mRNA targets; however, the RNA binding and recognition properties of full-length CPSF30 are not known. Herein, we report the isolation and biochemical characterization of full-length CPSF30. We report that CPSF30 contains one 2Fe-2S cluster in addition to five zinc ions, as measured by inductively coupled plasma mass spectrometry, ultraviolet-visible spectroscopy, and X-ray absorption spectroscopy. Utilizing fluorescence anisotropy RNA binding assays, we show that full-length CPSF30 has high binding affinity for two types of pre-mRNA targets, AAUAAA and polyU, both of which are conserved sequence motifs present in the majority of pre-mRNAs. Binding to the AAUAAA motif requires that the five CCCH domains of CPSF30 be present, whereas binding to polyU sequences requires the entire, full-length CPSF30. These findings implicate the CCHC "zinc knuckle" present in the full-length protein as being critical for mediating polyU binding. We also report that truncated forms of the protein, containing either just two CCCH domains (ZF2 and ZF3) or the CCHC "zinc knuckle" domain, do not exhibit any RNA binding, indicating that CPSF30/RNA binding requires several ZF (and/or Fe-S cluster) domains working in concert to mediate RNA recognition.

摘要

剪接多聚腺苷酸化特异性因子 30(CPSF30)是一种“锌指”蛋白,在 pre-mRNA 向 RNA 的转变中发挥着关键作用。CPSF30 包含五个保守的 CCCH 结构域和一个 CCHC“锌指”结构域。CPSF30 的活性对 pre-mRNA 的加工至关重要。已经证明,只有 CCCH 结构域存在的蛋白质截短形式能够特异性结合富含 AU 的 pre-mRNA 靶标;然而,全长 CPSF30 的 RNA 结合和识别特性尚不清楚。在此,我们报道了全长 CPSF30 的分离和生化特性。我们报告说,CPSF30 除了五个锌离子外,还含有一个 2Fe-2S 簇,这是通过电感耦合等离子体质谱、紫外-可见光谱和 X 射线吸收光谱测量得出的。利用荧光各向异性 RNA 结合测定,我们表明全长 CPSF30 对两种类型的 pre-mRNA 靶标具有高结合亲和力,即 AAUAAA 和 polyU,这两种都是大多数 pre-mRNAs 中保守的序列基序。与 AAUAAA 基序的结合需要 CPSF30 的五个 CCCH 结构域存在,而与 polyU 序列的结合则需要全长的、全长的 CPSF30。这些发现表明,全长蛋白中的 CCHC“锌指”对于介导 polyU 结合至关重要。我们还报告说,蛋白质的截短形式,包含两个 CCCH 结构域(ZF2 和 ZF3)或 CCHC“锌指”结构域,都没有表现出任何 RNA 结合,这表明 CPSF30/RNA 结合需要几个 ZF(和/或 Fe-S 簇)结构域协同作用来介导 RNA 识别。

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