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线虫蛔虫中的大多数信使核糖核酸(mRNA)都进行反式剪接:剪接前导序列的添加在翻译效率中的作用。

Most mRNAs in the nematode Ascaris lumbricoides are trans-spliced: a role for spliced leader addition in translational efficiency.

作者信息

Maroney P A, Denker J A, Darzynkiewicz E, Laneve R, Nilsen T W

机构信息

Department of Molecular Biology and Microbiology, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106, USA.

出版信息

RNA. 1995 Sep;1(7):714-23.

Abstract

Some pre-mRNAs in nematodes are processed by trans-splicing. In this reaction, a 22-nt 5' terminal exon (the spliced leader, SL) and its associated 2,2,7-trimethylguanosine cap are acquired from a specialized Sm snRNP, the SL RNP. Although it has been evident for many years that not all nematode mRNAs contain the SL sequence, the prevalence of trans-spliced mRNAs has, with the exception of Caenorhabditis elegans, not been determined. To address this question in an organism amenable to biochemical analysis, we have prepared a message-dependent protein synthesis system from developing embryos of the parasitic nematode, Ascaris lumbricoides. Using this system, we have used both hybrid-arrest and hybrid-selection approaches to show that the vast majority (80-90%) of A. lumbricoides mRNAs contain the SL sequence and therefore are processed by trans-splicing. Furthermore, to examine the effect of SL addition on translation, we have measured levels of protein synthesis in extracts programmed with a variety of synthetic mRNAs. We find that the SL sequence itself and its associated hypermethylated cap functionally collaborate to enhance translational efficiency, presumably at the level of initiation of protein synthesis. These results indicate that trans-splicing plays a larger role in nematode gene expression than previously suspected.

摘要

线虫中的一些前体mRNA通过反式剪接进行加工。在这个反应中,一个22个核苷酸的5'末端外显子(剪接前导序列,SL)及其相关的2,2,7-三甲基鸟苷帽从一种特殊的Sm snRNP(SL RNP)获得。尽管多年来已经很明显并非所有线虫mRNA都含有SL序列,但除了秀丽隐杆线虫外,反式剪接mRNA的普遍性尚未确定。为了在一种适合生化分析的生物体中解决这个问题,我们从寄生线虫蛔虫发育中的胚胎中制备了一种依赖信使的蛋白质合成系统。利用这个系统,我们使用了杂交阻断和杂交选择方法来表明,绝大多数(80 - 90%)的蛔虫mRNA含有SL序列,因此是通过反式剪接进行加工的。此外,为了研究添加SL对翻译的影响,我们测量了用各种合成mRNA编程的提取物中的蛋白质合成水平。我们发现SL序列本身及其相关的超甲基化帽在功能上协同作用以提高翻译效率,推测是在蛋白质合成起始水平。这些结果表明,反式剪接在线虫基因表达中所起的作用比以前认为的更大。

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