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来自布氏锥虫的复合体,其表现出缺失编辑和其他与编辑相关的特性。

Complexes from Trypanosoma brucei that exhibit deletion editing and other editing-associated properties.

作者信息

Corell R A, Read L K, Riley G R, Nellissery J K, Allen T E, Kable M L, Wachal M D, Seiwert S D, Myler P J, Stuart K D

机构信息

Seattle Biomedical Research Institute, Washington 98109-1651, USA.

出版信息

Mol Cell Biol. 1996 Apr;16(4):1410-8. doi: 10.1128/MCB.16.4.1410.

Abstract

Transcripts from many mitochondrial genes in kinetoplastids undergo RNA editing, a posttranscriptional process which inserts and deletes uridines. By assaying for deletion editing in vitro, we found that the editing activity from Trypanosoma brucei mitochondrial lysates (S.D. Seiwert and K.D. Stuart), Science 266:114-117,1994) sediments with a peak of approximately 20S. RNA helicase, terminal uridylyl transferase, RNA ligase, and adenylation activities, which may have a role in editing, cosediment in a broad distribution, with most of each activity at 35 to 40S. Most ATPase 6 (A6) guide RNA and unedited A6 mRNA sediments at 20 to 30S, with some sedimenting further into the gradient, while most edited A6 mRNA sediments at >35S. Several mitochondrial proteins which cross-link specifically with guide RNA upon UV treatment also sediment in glycerol gradients. Notably, a 65-kDa protein sediments primarily at approximately 20S, a 90-kDa protein sediments at 35 to 40S, and a 25-kDa protein is present at <10S. Most ribonucleoprotein complexes that form with gRNA in vitro sediment at 10 to 20S, except for one, which sediments at 30 to 45S. These results suggest that RNA editing takes place within a multicomponent complex. The potential functions of and relationships between the 20S and 35 to 40S complexes are discussed.

摘要

动质体中许多线粒体基因的转录本会经历RNA编辑,这是一个在转录后插入和删除尿苷的过程。通过体外检测缺失编辑,我们发现布氏锥虫线粒体裂解物的编辑活性(S.D. 塞韦特和K.D. 斯图尔特,《科学》266:114 - 117,1994年)在约20S处出现沉降峰值。可能在编辑过程中发挥作用的RNA解旋酶、末端尿苷酰转移酶、RNA连接酶和腺苷化活性在较宽的分布范围内共同沉降,每种活性的大部分在35至40S处。大多数ATPase 6(A6)引导RNA和未编辑的A6 mRNA在20至30S处沉降,有些进一步沉降到梯度更深的位置,而大多数编辑后的A6 mRNA在>35S处沉降。几种线粒体蛋白在紫外线处理后与引导RNA特异性交联,它们也在甘油梯度中沉降。值得注意的是,一种65 kDa的蛋白主要在约20S处沉降,一种90 kDa的蛋白在35至40S处沉降,一种25 kDa的蛋白在<10S处存在。除了一种在30至45S处沉降的核糖核蛋白复合物外,大多数在体外与gRNA形成的核糖核蛋白复合物在10至20S处沉降。这些结果表明RNA编辑发生在一个多组分复合物中。文中讨论了20S复合物与35至40S复合物之间的潜在功能和关系。

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本文引用的文献

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RNA editing in kinetoplastid mitochondria.动质体线粒体中的RNA编辑
FASEB J. 1993 Jan;7(1):54-63. doi: 10.1096/fasebj.7.1.8422975.
3
RNA-protein interactions in mRNA 3'-end formation.
Mol Biol Rep. 1993 Aug;18(2):157-61. doi: 10.1007/BF00986771.
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RNA editing and the evolution of parasites.RNA编辑与寄生虫的进化
Science. 1994 Jun 24;264(5167):1870-1. doi: 10.1126/science.8009214.
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Guide RNA molecules not engaged in RNA editing form ribonucleoprotein complexes free of mRNA.
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