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首页> 外文期刊>Plant and cell physiology >Mitochondrial Heat Shock Protein 60s Interact with What's This Factor 9 to Regulate RNA Splicing of ccmF(C) and rpl2
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Mitochondrial Heat Shock Protein 60s Interact with What's This Factor 9 to Regulate RNA Splicing of ccmF(C) and rpl2

机译:线粒体热休克蛋白60s与该因子9相互作用,以调节CCMF(C)和RPL2的RNA剪接

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Mitochondrial intron splicing is a plant-specific feature that was acquired during the co-evolution of eukaryotic host cells and a-proteobacteria. The elimination of these introns is facilitated by mitochondrial-targeted proteins encoded by its host, nucleus. What's this factor 9 (WTF9), a nuclear-encoded plant organelle RNA recognition (PORR) protein, is involved in the splicing of the mitochondrial group II introns rpl2 and ccmF(C). Disruption of WTF9 causes developmental defects associated with the loss of Cyt c and Cyt c1 in Arabidopsis. In the present study, using a co-immunoprecipitation assay, we found that HSP60s interacted with WTF9, which was further confirmed by a pull-down assay. HSP60s are molecular chaperones that assist with protein folding in both eukaryotic and prokaryotic cells. However, accumulating evidence suggests that HSP60s also participate in other biological functions such as RNA metabolism and RNA protection. In this study, we found that consistently with their interaction with WTF9, HSP60s interacted with 48 nucleotides of the ccmF(C) intron. In mutant studies, the double mutant hsp60-3a1hsp60-3b1 exhibited a small stature phenotype and reduced splicing efficiency for rpl2 and ccmF(C). These observations were similar to those in wtf9 mutants and suggest that HSP60s are involved in the RNA splicing of rpl2 and ccmF(C) introns in mitochondria. Our findings suggest that HSP60s participate in mitochondrial RNA splicing through their RNA-binding ability.
机译:线粒体内含子剪接是一种植物特征,其在真核宿主细胞和A-植物的共同进化期间获得。通过其宿主细胞核编码的线粒体靶向蛋白促进了这些内含子的消除。该因子9(WTF9)是一种核编码植物细胞器RNA识别(Porr)蛋白,参与线粒体II内含子RPL2和CCMF(C)的剪接。 WTF9的破坏导致与拟南芥中Cyt C和Cyt C1的丧失相关的发育缺陷。在本研究中,使用共免疫沉淀法测定,我们发现HSP60s与WTF9相互作用,其通过下拉测定进一步证实。 HSP60S是分子伴侣,其在真核和原核细胞中有助于蛋白质折叠。然而,积累证据表明,HSP60也参与其他生物学功能,例如RNA代谢和RNA保护。在这项研究中,我们发现,随着它们与WTF9的相互作用,HSP60S与CCMF(C)内含子的48个核苷酸相互作用。在突变体研究中,双突变体HSP60-3A1HSP60-3B1表现出小的状况表型和降低RPL2和CCMF(C)的剪接效率。这些观察结果与WTF9突变体中的观察结果类似,并表明HSP60s参与了线粒体中RPL2和CCMF(C)内含子的RNA剪接。我们的研究结果表明,HSP60S通过其RNA结合能力参与线粒体RNA剪接。

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