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β-原肌球蛋白前体信使核糖核酸的可变剪接:在非肌肉细胞中阻断骨骼肌外显子使用的顺式作用元件和细胞因子。

Alternative splicing of beta-tropomyosin pre-mRNA: cis-acting elements and cellular factors that block the use of a skeletal muscle exon in nonmuscle cells.

作者信息

Guo W, Mulligan G J, Wormsley S, Helfman D M

机构信息

Cold Spring Harbor Laboratory, New York 11724.

出版信息

Genes Dev. 1991 Nov;5(11):2096-107. doi: 10.1101/gad.5.11.2096.

DOI:10.1101/gad.5.11.2096
PMID:1936995
Abstract

The rat beta-tropomyosin (beta-TM) gene encodes both skeletal muscle beta-TM and fibroblast TM-1 by an alternative RNA-splicing mechanism. This gene contains 11 exons. Exons 1-5, 8, and 9 are common to all mRNAs expressed from the gene. Exons 6 and 11 are used in fibroblasts as well as smooth muscle cells, whereas exons 7 and 10 are used in skeletal muscle cells. In this study we have carried out an extensive mutational analysis to identify cis-acting elements that block the use of the skeletal muscle-specific exon 7 in nonmuscle cells. These studies localize the critical elements for regulated alternative splicing to sequences within exon 7 and the adjacent upstream intron. In addition, mutations that inactivate the 5'- or 3'-splice sites of exon 6 do not result in the use of the skeletal muscle-specific exon 7 in nonmuscle cells, suggesting that splice-site selection in vivo is not regulated by a simple cis-acting competition mechanism but, rather, by a mechanism that inhibits the use of exon 7 in certain cellular environments. In support of this hypothesis we have identified sequence-specific RNA-binding proteins in HeLa cell nuclear extracts using native gel electrophoresis and binding competition assays. Mutations in the pre-mRNA that result in the use of the skeletal muscle exon in vivo also disrupt the binding of these proteins to the RNA in vitro. We propose that the binding of these proteins to the pre-mRNA is involved in regulated alternative splicing and that this interaction is required for blocking the use of the skeletal muscle exon in nonmuscle cells.

摘要

大鼠β-原肌球蛋白(β-TM)基因通过可变RNA剪接机制编码骨骼肌β-TM和成纤维细胞TM-1。该基因包含11个外显子。外显子1-5、8和9是该基因表达的所有mRNA所共有的。外显子6和11在成纤维细胞和平滑肌细胞中使用,而外显子7和10在骨骼肌细胞中使用。在本研究中,我们进行了广泛的突变分析,以鉴定在非肌肉细胞中阻止使用骨骼肌特异性外显子7的顺式作用元件。这些研究将调控可变剪接的关键元件定位到外显子7及其相邻上游内含子内的序列。此外,使外显子6的5'或3'剪接位点失活的突变不会导致非肌肉细胞中使用骨骼肌特异性外显子7,这表明体内剪接位点的选择不是由简单的顺式作用竞争机制调控的,而是由一种在某些细胞环境中抑制外显子7使用的机制调控的。为支持这一假设,我们使用天然凝胶电泳和结合竞争试验在HeLa细胞核提取物中鉴定了序列特异性RNA结合蛋白。前体mRNA中的突变导致体内使用骨骼肌外显子,也会破坏这些蛋白质在体外与RNA的结合。我们提出,这些蛋白质与前体mRNA的结合参与了调控可变剪接,并且这种相互作用是在非肌肉细胞中阻止使用骨骼肌外显子所必需的。

相似文献

1
Alternative splicing of beta-tropomyosin pre-mRNA: cis-acting elements and cellular factors that block the use of a skeletal muscle exon in nonmuscle cells.β-原肌球蛋白前体信使核糖核酸的可变剪接:在非肌肉细胞中阻断骨骼肌外显子使用的顺式作用元件和细胞因子。
Genes Dev. 1991 Nov;5(11):2096-107. doi: 10.1101/gad.5.11.2096.
2
cis-elements involved in alternative splicing in the rat beta-tropomyosin gene: the 3'-splice site of the skeletal muscle exon 7 is the major site of blockage in nonmuscle cells.大鼠β-原肌球蛋白基因中参与可变剪接的顺式作用元件:骨骼肌外显子7的3'剪接位点是非肌肉细胞中剪接受阻的主要位点。
Nucleic Acids Res. 1993 Oct 11;21(20):4762-8. doi: 10.1093/nar/21.20.4762.
3
Identification of two distinct intron elements involved in alternative splicing of beta-tropomyosin pre-mRNA.鉴定参与β-原肌球蛋白前体mRNA可变剪接的两种不同内含子元件。
Genes Dev. 1990 Jan;4(1):98-110. doi: 10.1101/gad.4.1.98.
4
Donor site competition is involved in the regulation of alternative splicing of the rat beta-tropomyosin pre-mRNA.供体位点竞争参与大鼠β-原肌球蛋白前体mRNA可变剪接的调控。
RNA. 1999 Feb;5(2):290-301. doi: 10.1017/s1355838299980743.
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Alternative splicing of beta-tropomyosin pre-mRNA: multiple cis-elements can contribute to the use of the 5'- and 3'-splice sites of the nonmuscle/smooth muscle exon 6.β-原肌球蛋白前体mRNA的可变剪接:多个顺式元件可影响非肌肉/平滑肌外显子6的5'和3'剪接位点的使用。
Nucleic Acids Res. 1994 Jun 25;22(12):2318-25. doi: 10.1093/nar/22.12.2318.
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Tissue-specific splicing of two mutually exclusive exons of the chicken beta-tropomyosin pre-mRNA: positive and negative regulations.鸡β-原肌球蛋白前体mRNA两个相互排斥外显子的组织特异性剪接:正负调控
Biochimie. 1996;78(6):457-65. doi: 10.1016/0300-9084(96)84752-3.
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Branch point selection in alternative splicing of tropomyosin pre-mRNAs.原肌球蛋白前体mRNA可变剪接中的分支点选择
Nucleic Acids Res. 1989 Jul 25;17(14):5633-50. doi: 10.1093/nar/17.14.5633.
8
In vivo splicing of the beta tropomyosin pre-mRNA: a role for branch point and donor site competition.β-原肌球蛋白前体信使核糖核酸的体内剪接:分支点和供体位点竞争的作用
Mol Cell Biol. 1992 Jul;12(7):3204-15. doi: 10.1128/mcb.12.7.3204-3215.1992.
9
Alternative splicing of tropomyosin pre-mRNAs in vitro and in vivo.原肌球蛋白前体mRNA在体外和体内的可变剪接
Genes Dev. 1988 Dec;2(12A):1627-38. doi: 10.1101/gad.2.12a.1627.
10
Exonic splicing enhancers contribute to the use of both 3' and 5' splice site usage of rat beta-tropomyosin pre-mRNA.外显子剪接增强子有助于大鼠β-原肌球蛋白前体mRNA的3'和5'剪接位点的使用。
RNA. 1999 Mar;5(3):378-94. doi: 10.1017/s1355838299981050.

引用本文的文献

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Diversification of the muscle proteome through alternative splicing.通过选择性剪接实现肌肉蛋白质组的多样化。
Skelet Muscle. 2018 Mar 6;8(1):8. doi: 10.1186/s13395-018-0152-3.
2
Developmentally regulated alternative splicing is perturbed in type 1 diabetic skeletal muscle.在1型糖尿病患者的骨骼肌中,发育调控的可变剪接受损。
Muscle Nerve. 2017 Oct;56(4):744-749. doi: 10.1002/mus.25599. Epub 2017 Apr 17.
3
Pre-mRNA mis-splicing of sarcomeric genes in heart failure.心力衰竭中心肌基因的前 mRNA 剪接错误。
Biochim Biophys Acta Mol Basis Dis. 2017 Aug;1863(8):2056-2063. doi: 10.1016/j.bbadis.2016.11.008. Epub 2016 Nov 5.
4
Son maintains accurate splicing for a subset of human pre-mRNAs.儿子维持人类前体 mRNA 亚类的准确剪接。
J Cell Sci. 2011 Dec 15;124(Pt 24):4286-98. doi: 10.1242/jcs.092239. Epub 2011 Dec 22.
5
Roles of hnRNP A1, SR proteins, and p68 helicase in c-H-ras alternative splicing regulation.异质核糖核蛋白A1、丝氨酸/精氨酸富集蛋白和p68解旋酶在c-H-ras可变剪接调控中的作用。
Mol Cell Biol. 2003 Apr;23(8):2927-41. doi: 10.1128/MCB.23.8.2927-2941.2003.
6
The CELF family of RNA binding proteins is implicated in cell-specific and developmentally regulated alternative splicing.CELF 家族的 RNA 结合蛋白与细胞特异性及发育调控的可变剪接有关。
Mol Cell Biol. 2001 Feb;21(4):1285-96. doi: 10.1128/MCB.21.4.1285-1296.2001.
7
An intronic splicing silencer causes skipping of the IIIb exon of fibroblast growth factor receptor 2 through involvement of polypyrimidine tract binding protein.一个内含子剪接沉默子通过多嘧啶序列结合蛋白的参与导致成纤维细胞生长因子受体2的IIIb外显子跳跃。
Mol Cell Biol. 2000 Oct;20(19):7388-400. doi: 10.1128/MCB.20.19.7388-7400.2000.
8
Exonic splicing enhancers contribute to the use of both 3' and 5' splice site usage of rat beta-tropomyosin pre-mRNA.外显子剪接增强子有助于大鼠β-原肌球蛋白前体mRNA的3'和5'剪接位点的使用。
RNA. 1999 Mar;5(3):378-94. doi: 10.1017/s1355838299981050.
9
Polypyrimidine tract binding protein functions as a repressor to regulate alternative splicing of alpha-actinin mutally exclusive exons.聚嘧啶序列结合蛋白作为一种阻遏物,调节α-辅肌动蛋白相互排斥外显子的可变剪接。
Mol Cell Biol. 1999 Apr;19(4):2699-711. doi: 10.1128/MCB.19.4.2699.
10
Binding of hnRNP H to an exonic splicing silencer is involved in the regulation of alternative splicing of the rat beta-tropomyosin gene.异质性核糖核蛋白H与外显子剪接沉默子的结合参与大鼠β-原肌球蛋白基因可变剪接的调控。
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