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首页> 外文期刊>The Journal of biological chemistry >Splicing of Yeast aI5β Group I Intron Requires SUV3 to Recycle MRS1 via Mitochondrial Degradosome-promoted Decay of Excised Intron Ribonucleoprotein (RNP)
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Splicing of Yeast aI5β Group I Intron Requires SUV3 to Recycle MRS1 via Mitochondrial Degradosome-promoted Decay of Excised Intron Ribonucleoprotein (RNP)

机译:酵母A型AI5β组I内含子需要SCV3通过线粒体促进的切除内含子核糖核蛋白(RNP)的促进衰变来回收MRS1

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Yeast Suv3p is a member of the DEXH/D box family of RNA helicases and is a critical component of the mitochondrial degradosome, which also includes a 3′ → 5′ exonuclease, Dss1p. Defects in the degradosome result in accumulation of aberrant transcripts, unprocessed transcripts, and excised group I introns. In addition, defects in SUV3 result in decreased splicing of the aI5β and bI3 group I introns. Whereas a role for Suv3p in RNA degradation is well established, the function of Suv3p in splicing of group I introns has remained elusive. It has been particularly challenging to determine if Suv3p effects group I intron splicing through RNA degradation as part of the degradosome, or has a direct role in splicing as a chaperone, because nearly all perturbations of SUV3 or DSS1 result in loss of the mitochondrial genome. Here we utilized the suv3-1 allele, which is defective in RNA metabolism and yet maintains a stable mitochondrial genome, to investigate the role of Suv3p in splicing of the aI5β group I intron. We provide genetic evidence that Mrs1p is a limiting cofactor for aI5β splicing, and this evidence also suggests that Suv3p activity is required to recycle the excised aI5β ribonucleoprotein. We also show that Suv3p acts indirectly as a component of the degradosome to promote aI5β splicing. We present a model whereby defects in Suv3p result in accumulation of stable, excised group I intron ribonucleoproteins, which result in sequestration of Mrs1p, and a concomitant reduction in splicing of aI5β.
机译:酵母SUV3P是RNA螺旋酶的DEXH / D盒系列的成员,是线粒体降解体的关键组分,其还包括3'→5'外核酸酶DSS1P。降解体中的缺陷导致多种转录物,未加工的转录物和切除的I内含物的积累。此外,SUV3中的缺陷导致AI5β和BI3组I内含子的剪接降低。鉴于RNA降解中的SUV3P的作用是很好的,而SUV3P在I内含子的剪接中的功能仍然难以捉摸。确定SUV3P效应是否INTRNA脱落作为降解体的一部分,或者在伴侣中拼接的直接作用是特别具有挑战性的,或者在作为伴侣中的直接作用在这里,我们利用SUV3-1等位基因,其在RNA代谢中有缺陷,并且保持稳定的线粒体基因组,以研究SUV3P在I5β组I内含子的剪接中的作用。我们提供遗传证据,即MRS1P是用于AI5β剪接的限制辅因子,并且该证据还表明SUV3P活性被要求再循环切除的AI5β核糖核蛋白。我们还表明SUV3P间接作用作为降解组的组分,以促进AI5β剪接。我们介绍了一种模型,即SUV3P的缺陷导致稳定的切除的群体核糖核糖蛋白的积累,这导致MRS1P的封存,以及AI5β的剪接伴随的伴随。

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