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寻找 3' 内切酶。

The hunt for the 3' endonuclease.

机构信息

Department of Biochemistry and Biophysics and Program in Molecular Biology and Biotechnology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

出版信息

Wiley Interdiscip Rev RNA. 2010 Sep-Oct;1(2):325-40. doi: 10.1002/wrna.33. Epub 2010 Jul 16.

Abstract

Pre-mRNAs are typically processed at the 3(') end by cleavage/polyadenylation. This is a two-step processing reaction initiated by endonucleolytic cleavage of pre-mRNAs downstream of the AAUAAA sequence or its variant, followed by extension of the newly generated 3(') end with a poly(A) tail. In metazoans, replication-dependent histone transcripts are cleaved by a different 3(') end processing mechanism that depends on the U7 small nuclear ribonucleoprotein and the polyadenylation step is omitted. Each of the two mechanisms occurs in a macromolecular assembly that primarily functions to juxtapose the scissile bond with the 3(') endonuclease. Remarkably, despite characterizing a number of processing factors, the identity of this most critical component remained elusive until recently. For cleavage coupled to polyadenylation, much needed help was offered by bioinformatics, which pointed to CPSF-73, a known processing factor required for both cleavage and polyadenylation, as the possible 3(') endonuclease. In silico structural analysis indicated that this protein is a member of the large metallo-β-lactamase family of hydrolytic enzymes and belongs to the β-CASP subfamily that includes several RNA and DNA-specific nucleases. Subsequent experimental studies supported the notion that CPSF-73 does function as the endonuclease in the formation of polyadenylated mRNAs, but some controversy still remains as a different cleavage and polyadenylation specificity factor (CPSF) subunit, CPSF-30, displays an endonuclease activity in vitro while recombinant CPSF-73 is inactive. Unexpectedly, CPSF-73 as the 3(') endonuclease in cleavage coupled to polyadenylation found a strong ally in U7-dependent processing of histone pre-mRNAs, which was shown to utilize the same protein as the cleaving enzyme. It thus seems likely that these two processing reactions evolved from a common mechanism, with CPSF-73 as the endonuclease.

摘要

前体 mRNA 通常在 3'(')末端通过切割/多聚腺苷酸化进行加工。这是一个两步加工反应,由前体 mRNA 在 AAUAAA 序列或其变体下游的内切酶切割起始,然后用 poly(A) 尾巴延伸新生成的 3'(')末端。在后生动物中,依赖复制的组蛋白转录物通过依赖 U7 小核核糖核蛋白的不同 3'(')末端加工机制进行切割,并且省略了多聚腺苷酸化步骤。这两种机制中的每一种都发生在一个主要功能是使切口与 3'(')内切酶毗邻的大分子组装体中。值得注意的是,尽管鉴定了许多加工因子,但直到最近,这个最关键的成分的身份仍然难以捉摸。对于与多聚腺苷酸化偶联的切割,生物信息学提供了急需的帮助,它指出 CPSF-73,一种已知的切割和多聚腺苷酸化都需要的加工因子,是可能的 3'(')内切酶。计算机结构分析表明,该蛋白是水解酶的大型金属β-内酰胺酶家族的成员,属于包括几种 RNA 和 DNA 特异性核酶的β-CASP 亚家族。随后的实验研究支持了 CPSF-73 确实作为多聚腺苷酸化 mRNA 形成中的内切酶发挥作用的观点,但仍存在一些争议,因为不同的切割和多聚腺苷酸化特异性因子 (CPSF) 亚基 CPSF-30 在体外显示出内切酶活性,而重组 CPSF-73 则没有活性。出乎意料的是,在切割与多聚腺苷酸化偶联的 3'(')末端中作为内切酶的 CPSF-73 在依赖 U7 的组蛋白前体 mRNA 加工中找到了一个强大的盟友,该酶显示使用相同的蛋白质作为切割酶。因此,这两种加工反应似乎很可能从一个共同的机制进化而来,CPSF-73 是内切酶。

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