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受体位点周围的序列元件抑制肌浆网/内质网Ca2+ -ATP酶2基因转录本的可变剪接。

Sequence elements surrounding the acceptor site suppress alternative splicing of the sarco/endoplasmic reticulum Ca2+-ATPase 2 gene transcript.

作者信息

Van Den Bosch L, Mertens L, Gijsbers S, Heyen M V, Wuytack F, Eggermont J

机构信息

Laboratory of Physiology, University of Leuven (KULeuven), Campus Gasthuisberg, B-3000 Leuven, Belgium.

出版信息

Biochem J. 1997 Mar 15;322 ( Pt 3)(Pt 3):885-91. doi: 10.1042/bj3220885.

Abstract

Expression of the muscle-specific 2a isoform of the sarco/endoplasmic reticulum Ca2+-ATPase (SERCA2) requires activation of an inefficient optional splice process at the 3' end of the primary gene transcript. The sequence elements required for this regulated splice event were studied by modifying a minigene containing the 3' end of the SERCA2 gene. An important requirement appears to be a strong muscle-specific acceptor site, as replacing it by a weak one prevented the induction of muscle-type splicing during myogenic differentiation. The induction of muscle-type splicing did not depend on positive cis-active sequences in the muscle-specific exon. On the other hand, replacement of a broad region around the acceptor site dramatically deregulated the expression pattern, as this modification strongly induced muscle-type splicing in undifferentiated muscle cells and in fibroblasts. This cis-active region is also involved in the suppression of the neuronal type of splicing. Furthermore selective replacement of the acceptor site as well as deletions or replacements in the muscle-specific exon induced muscle-type splicing to various extents in undifferentiated myogenic cells. Therefore sequence elements in the distal part of the optional intron and in the muscle-specific exon contribute to the suppression of muscle-specific SERCA2 splicing.

摘要

肌浆网/内质网Ca2 + -ATP酶(SERCA2)的肌肉特异性2a同工型的表达需要在初级基因转录本的3'端激活一个低效的选择性剪接过程。通过修饰一个包含 SERCA2 基因3'端的小基因,研究了这种受调控的剪接事件所需的序列元件。一个重要的要求似乎是一个强的肌肉特异性受体位点,因为用一个弱的受体位点取代它会阻止成肌分化过程中肌肉型剪接的诱导。肌肉型剪接的诱导不依赖于肌肉特异性外显子中的正向顺式作用序列。另一方面,受体位点周围一个广泛区域的替换极大地改变了表达模式,因为这种修饰在未分化的肌肉细胞和成纤维细胞中强烈诱导了肌肉型剪接。这个顺式作用区域也参与了神经元型剪接的抑制。此外,在未分化的成肌细胞中,受体位点的选择性替换以及肌肉特异性外显子中的缺失或替换在不同程度上诱导了肌肉型剪接。因此,选择性内含子远端部分和肌肉特异性外显子中的序列元件有助于抑制肌肉特异性SERCA2剪接。

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Non-snRNP protein splicing factors.非snRNP蛋白剪接因子
Biochim Biophys Acta. 1993 Jun 25;1173(3):247-65. doi: 10.1016/0167-4781(93)90122-t.

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