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秀丽隐杆线虫中胆碱能基因座剪接的异常调控。

Unusual regulation of splicing of the cholinergic locus in Caenorhabditis elegans.

作者信息

Mathews Eleanor A, Mullen Gregory P, Manjarrez Jacob R, Rand James B

机构信息

Genetic Models of Disease Research Program, Oklahoma Medical Research Foundation, Oklahoma City, Oklahoma 73104.

Genetic Models of Disease Research Program, Oklahoma Medical Research Foundation, Oklahoma City, Oklahoma 73104 Oklahoma Center for Neuroscience, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104

出版信息

Genetics. 2015 Mar;199(3):729-37. doi: 10.1534/genetics.114.173765. Epub 2015 Jan 8.

DOI:10.1534/genetics.114.173765
PMID:25571900
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4349067/
Abstract

The essential neurotransmitter acetylcholine functions throughout the animal kingdom. In Caenorhabditis elegans, the acetylcholine biosynthetic enzyme [choline acetyltransferase (ChAT)] and vesicular transporter [vesicular acetylcholine transporter (VAChT)] are encoded by the cha-1 and unc-17 genes, respectively. These two genes compose a single complex locus in which the unc-17 gene is nested within the first intron of cha-1, and the two gene products arise from a common pre-messenger RNA (pre-mRNA) by alternative splicing. This genomic organization, known as the cholinergic gene locus (CGL), is conserved throughout the animal kingdom, suggesting that the structure is important for the regulation and function of these genes. However, very little is known about CGL regulation in any species. We now report the identification of an unusual type of splicing regulation in the CGL of C. elegans, mediated by two pairs of complementary sequence elements within the locus. We show that both pairs of elements are required for efficient splicing to the distal acceptor, and we also demonstrate that proper distal splicing depends more on sequence complementarity within each pair of elements than on the sequences themselves. We propose that these sequence elements are able to form stem-loop structures in the pre-mRNA; such structures would favor specific splicing alternatives and thus regulate CGL splicing. We have identified complementary elements at comparable locations in the genomes of representative species of other animal phyla; we suggest that this unusual regulatory mechanism may be a general feature of CGLs.

摘要

重要的神经递质乙酰胆碱在整个动物界都发挥着作用。在秀丽隐杆线虫中,乙酰胆碱生物合成酶[胆碱乙酰转移酶(ChAT)]和囊泡转运体[囊泡乙酰胆碱转运体(VAChT)]分别由cha-1和unc-17基因编码。这两个基因组成一个单一的复合基因座,其中unc-17基因嵌套在cha-1的第一个内含子中,并且这两种基因产物通过可变剪接从共同的前体信使RNA(pre-mRNA)产生。这种基因组组织,即胆碱能基因座(CGL),在整个动物界都是保守的,这表明该结构对于这些基因的调控和功能很重要。然而,对于任何物种中CGL的调控了解甚少。我们现在报告在秀丽隐杆线虫的CGL中鉴定出一种不寻常的剪接调控类型,它由该基因座内的两对互补序列元件介导。我们表明,这两对元件对于有效剪接到远端受体都是必需的,并且我们还证明,正确的远端剪接更多地取决于每对元件内的序列互补性而非序列本身。我们提出这些序列元件能够在前体信使RNA中形成茎环结构;这样的结构将有利于特定的剪接选择,从而调节CGL剪接。我们在其他动物门的代表性物种的基因组中的可比位置鉴定出了互补元件;我们认为这种不寻常的调控机制可能是CGL的一个普遍特征。