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心肌和平滑肌中肌浆网Ca(2+)泵mRNA的稳定性:3'非翻译区的作用

Sarcoplasmic reticulum Ca(2+) pump mRNA stability in cardiac and smooth muscle: role of the 3'-untranslated region.

作者信息

Misquitta Christine M, Mwanjewe James, Nie Lin, Grover Ashok K

机构信息

Department of Biology, McMaster University, Hamilton, Ontario, Canada L8N 3Z5.

出版信息

Am J Physiol Cell Physiol. 2002 Aug;283(2):C560-8. doi: 10.1152/ajpcell.00527.2001.

Abstract

Stomach smooth muscle (SSM) and left ventricular muscle (LVM) express the sarco(endo)plasmic reticulum Ca(2+)-ATPase (SERCA) pump gene SERCA2. Alternative splicing yields two major isoforms, SERCA2a in LVM and slow twitch muscle and SERCA2b in SSM and most other tissues. The splices have different 3'-untranslated regions (UTR) and also encode proteins that differ slightly in their COOH-terminal domains. SERCA2 transcription rates are similar in the two tissues, yet LVM has a much higher level of SERCA2 mRNA than SSM. To understand the control of SERCA2 RNA expression, we inhibited transcription and showed that the half-life of SERCA2 mRNA is significantly longer (P < 0.05) in primary cultures of LVM cells than in SSM cells. Nuclear SERCA2 mRNA levels were also higher in LVM than in SSM. In vitro decay assays using synthetic RNA corresponding to the 3'-UTR of SERCA2a and -2b showed that nuclear extracts produced a faster decay of SERCA2 RNA than cytoplasmic extracts and that nuclear extracts produced a faster decay of SERCA2b than -2a. This was also true when the full-length native mRNA was used instead of the 3'-UTR RNA, and SERCA2b decay by cytoplasmic extracts was faster for LVM than for SSM. We propose that nuclear decay is an initial step in the control of SERCA2 RNA abundance and that this control is maintained or modulated in the cytoplasm. We discuss how these control mechanisms may be part of a control switch in cardiac development and pathophysiology.

摘要

胃平滑肌(SSM)和左心室肌(LVM)表达肌浆网Ca(2+)-ATP酶(SERCA)泵基因SERCA2。可变剪接产生两种主要异构体,LVM和慢肌中的SERCA2a以及SSM和大多数其他组织中的SERCA2b。这些剪接具有不同的3'-非翻译区(UTR),并且还编码在其COOH末端结构域中略有不同的蛋白质。两种组织中SERCA2的转录率相似,但LVM中SERCA2 mRNA的水平比SSM高得多。为了了解SERCA2 RNA表达的调控,我们抑制转录并表明,LVM细胞原代培养物中SERCA2 mRNA的半衰期明显长于SSM细胞(P <0.05)。LVM中核SERCA2 mRNA水平也高于SSM。使用对应于SERCA2a和-2b的3'-UTR的合成RNA进行的体外衰变分析表明,核提取物比细胞质提取物产生更快的SERCA2 RNA衰变,并且核提取物产生的SERCA2b衰变比-2a更快。当使用全长天然mRNA代替3'-UTR RNA时也是如此,并且细胞质提取物对LVM的SERCA2b衰变比对SSM更快。我们提出核衰变是控制SERCA2 RNA丰度的初始步骤,并且这种控制在细胞质中得以维持或调节。我们讨论了这些控制机制如何可能成为心脏发育和病理生理学中控制开关的一部分。

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