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科学家合作揭示剪接体重塑机制
作者:小柯机器人 发布时间:2020/11/29 22:07:03

西湖大学施一公、万蕊雪等研究人员合作报道了ATP酶/解旋酶Prp2及其共激活因子Spp2对剪接体重塑的机制。该研究于2020年11月27日在线发表于国际一流学术期刊《科学》。

研究人员报道了P??rp2单独、P??rp2与它的共激活因子Spp2结合和含有Prp2的活化剪接体结构,以及结构指导的生化分析结果。Prp2与剪接体弱结合,没有Spp2就无法发挥功能,而Spp2与Prp2和剪接体上的锚点稳定缔合,从而将Prp2束缚到激活的剪接体上并允许Prp2起作用。
 
前体mRNA被加载到Prp2的N-和C-半之间的特征通道中,其中N-半的Leu536和C-半的Arg844阻止了前体mRNA向其5'端的向后滑动。ATP结合和水解触发Prp2中的域间移动,从而推动前体mRNA朝其3'端单向逐步转移。这些保守的机制解释了剪接体重塑与前体mRNA剪接的耦合。
 
据介绍,由保守的ATP酶/解璇酶(包括Prp2)执行的剪接体重塑可以实现前体mRNA的剪接。但是,ATP酶/解璇酶功能的结构基础仍然知之甚少。
 
附:英文原文

Title: Mechanism of spliceosome remodeling by the ATPase/helicase Prp2 and its coactivator Spp2

Author: Rui Bai, Ruixue Wan, Chuangye Yan, Qi Jia, Jianlin Lei, Yigong Shi

Issue&Volume: 2021/01/08

Abstract: AbstractSpliceosome remodeling, executed by conserved ATPase/helicases including Prp2, enables pre-mRNA splicing. However, the structural basis for the function of the ATPase/helicases remains poorly understood. Here, we report atomic structures of Prp2 in isolation, Prp2 complexed with its coactivator Spp2, and Prp2-loaded activated spliceosome, and results of structure-guided biochemical analysis. Prp2 weakly associates with the spliceosome and cannot function without Spp2, which stably associates with Prp2 and anchors on the spliceosome, thus tethering Prp2 to the activated spliceosome and allowing Prp2 to function. Pre-mRNA is loaded into a featured channel between the N- and C-halves of Prp2, where Leu536 from the N-half and Arg844 from the C-half prevent backward sliding of pre-mRNA toward its 5′-end. ATP binding and hydrolysis trigger inter-domain movement in Prp2, which drives unidirectional step-wise translocation of pre-mRNA toward its 3′-end. These conserved mechanisms explain the coupling of spliceosome remodeling to pre-mRNA splicing.

DOI: 10.1126/science.abe8863

Source: https://science.sciencemag.org/content/early/2020/11/24/science.abe8863

期刊信息
Science:《科学》,创刊于1880年。隶属于美国科学促进会,最新IF:41.037