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The Octatricopeptide Repeat Protein Raa8 Is Required for Chloroplast trans Splicing

机译:叶绿体反式剪接需要Octatricopeptide重复蛋白Raa8

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The mRNA maturation of the tripartite chloroplast psaA gene from the green alga Chlamydomonas reinhardtii depends on various nucleus-encoded factors that participate in trans splicing of two group II introns. Recently, a multiprotein complex was identified that is involved in processing the psaA precursor mRNA. Using coupled tandem affinity purification (TAP) and mass spectrometry analyses with the trans-splicing factor Raa4 as a bait protein, we recently identified a multisubunit ribonucleoprotein (RNP) complex comprising the previously characterized trans-splicing factors Raa1, Raa3, Raa4, and Rat2 plus novel components. Raa1 and Rat2 share a structural motif, an octatricopeptide repeat (OPR), that presumably functions as an RNA interaction module. Two of the novel RNP complex components also exhibit a predicted OPR motif and were therefore considered potential trans-splicing factors. In this study, we selected bacterial artificial chromosome (BAC) clones encoding these OPR proteins and conducted functional complementation assays using previously generated trans-splicing mutants. Our assay revealed that the trans-splicing defect of mutant F19 was restored by a new factor we named RAA8; molecular characterization of complemented strains verified that Raa8 participates in splicing of the first psaA group II intron. Three of six OPR motifs are located in the C-terminal end of Raa8, which was shown to be essential for restoring psaA mRNA trans splicing. Our results support the important role played by OPR proteins in chloroplast RNA metabolism and also demonstrate that combining TAP and mass spectrometry with functional complementation studies represents a vigorous tool for identifying trans-splicing factors.
机译:绿藻莱茵衣藻的三方叶绿体 psaA 基因的mRNA成熟取决于参与两个II类内含子 trans 剪接的各种核编码因子。最近,鉴定出一种多蛋白复合物,其参与加工 psaA 前体mRNA。使用偶联的串联亲和纯化(TAP)和以反转录剪接因子Raa4作为诱饵蛋白的质谱分析,我们最近鉴定了包含先前表征的 trans < / em>剪接因子Raa1,Raa3,Raa4和Rat2加上新的成分。 Raa1和Rat2共享一个结构基序,即八碳肽重复(OPR),它可能起RNA相互作用模块的作用。两个新颖的RNP复杂组件还显示出预测的OPR主题,因此被认为是潜在的 trans 剪接因子。在这项研究中,我们选择了编码这些OPR蛋白的细菌人工染色体(BAC)克隆,并使用先前生成的 trans 剪接突变体进行了功能互补测定。我们的测定表明,突变体F19的 trans 剪接缺陷已被我们称为 RAA8 的新因子修复。互补菌株的分子鉴定证明Raa8参与了第一个 psaA II型内含子的剪接。六个OPR基序中的三个位于Raa8的C末端,这对于恢复 psaA mRNA trans 剪接至关重要。我们的研究结果支持了OPR蛋白在叶绿体RNA代谢中发挥的重要作用,并且证明了TAP和质谱与功能互补研究的结合代表了一种确定 trans 剪接因子的有力工具。

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