莱茵衣藻第二步催化活化剪接体的结构。

Yichen Lu,Ke Liang,Xiechao Zhan
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引用次数: 0

摘要

前 mRNA 剪接是真核生物基因表达的基本步骤,由剪接体执行。虽然人们对酵母和人类中剪接体的组成和结构有广泛的了解,但对非典型生物中剪接体的结构多样性仍不清楚。在这里,我们以 2.6 Å 的分辨率展示了来自单细胞绿藻衣藻的第二步催化活性剪接体(C* 复合物)的冷冻电镜结构。该衣藻 C* 复合物由 29 个蛋白质和 4 个 RNA 元件组成,形成了一个动态组装体,其整体结构与酵母和人类的同类复合物相似,但也有自己的独特之处。独特的结构特征包括蛋白质组成的变化以及一些值得注意的 RNA 特征。剪接因子 Prp17 有四个片段和一个 WD40 结构域,与多种蛋白质和 RNA 成分发生复杂的相互作用。衣藻 C* 复合物结构的阐明为了解植物中 RNA 剪接的分子机制和真核生物中剪接的进化提供了启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure of a step II catalytically activated spliceosome from Chlamydomonas reinhardtii.
Pre-mRNA splicing, a fundamental step in eukaryotic gene expression, is executed by the spliceosomes. While there is extensive knowledge of the composition and structure of spliceosomes in yeasts and humans, the structural diversity of spliceosomes in non-canonical organisms remains unclear. Here, we present a cryo-EM structure of a step II catalytically activated spliceosome (C* complex) derived from the unicellular green alga Chlamydomonas reinhardtii at 2.6 Å resolution. This Chlamydomonas C* complex comprises 29 proteins and four RNA elements, creating a dynamic assembly that shares a similar overall architecture with yeast and human counterparts but also has unique features of its own. Distinctive structural characteristics include variations in protein compositions as well as some noteworthy RNA features. The splicing factor Prp17, with four fragments and a WD40 domain, is engaged in intricate interactions with multiple protein and RNA components. The structural elucidation of Chlamydomonas C* complex provides insights into the molecular mechanism of RNA splicing in plants and understanding splicing evolution in eukaryotes.
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