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首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >The upstream stem-loop domain of the 3' untranslated region of apolipoprotein II mRNA binds the estrogen-regulated mRNA stabilizing factor.
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The upstream stem-loop domain of the 3' untranslated region of apolipoprotein II mRNA binds the estrogen-regulated mRNA stabilizing factor.

机译:载脂蛋白II mRNA 3'非翻译区的上游茎环结构域与雌激素调节的mRNA稳定因子结合。

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摘要

Apolipoprotein II (apoII), a component of the very low density lipoprotein (VLDL) particle, is a yolk protein expressed in the liver in response to estrogen. Its expression is modulated by estrogen-mediated stimulation of transcription as well as stabilization of its mRNA. This stabilization is due to the estrogen-regulated mRNA stabilizing factor (E-RmRNASF) [Cell. Mol. Biol. Res. 41 (1995) 583). E-RmRNASF protects apoII mRNA from targeted endonucleolytic degradation. The expression of E-RmRNASF itself is under estrogenic control. The hepatic expression of E-RmRNASF is also modulated by certain estrogenic and anti-estrogenic non-steroidal environmental xenobiotics [Biochem. Pharmacol. 53 (1997) 1425]. Studies involving RNA affinity-based depletion of mRNA stabilization activity indicated that E-RmRNASF binds to apoII mRNA. E-RmRNASF binds apoII mRNA in a region-specific manner. The region of binding has been narrowed down to the upstream domain of stem-loop secondary structure spanning nucleotides (nt) 402-558 in the 3' untranslated region (3'UTR). A RNA affinity chromatography procedure using this portion of apoII mRNA was utilized for the purification of E-RmRNASF. A gel filtration (GF) chromatography step preceding the RNA affinity chromatography was required for additional enrichment of E-RmRNASF. A functional assay involving the in vitro stabilization of apoII mRNA from degradation was utilized to detect E-RmRNASF during chromatography. E-RmRNASF appears to be a protein of apparent molecular weight of 20-25kDa visualized by SDS polyacrylamide gel electrophoresis.
机译:载脂蛋白II(apoII)是极低密度脂蛋白(VLDL)颗粒的组成部分,是响应雌激素在肝脏中表达的卵黄蛋白。它的表达受雌激素介导的转录刺激以及其mRNA稳定的调节。这种稳定是由于雌激素调节的mRNA稳定因子(E-RmRNASF)[Cell。大声笑生物学Res。 41(1995)583)。 E-RmRNASF保护apoII mRNA免于靶向内切核酸降解。 E-RmRNASF本身的表达受雌激素控制。 E-RmRNASF的肝表达也受到某些雌激素和抗雌激素的非甾体环境异质生物的调控[Biochem。 Pharmacol。 53(1997)1425]。涉及基于RNA亲和力的mRNA稳定活性消耗的研究表明E-RmRNASF与apoII mRNA结合。 E-RmRNASF以区域特异性方式结合apoII mRNA。结合的区域已经缩小到跨越3'非翻译区(3'UTR)中核苷酸(nt)402-558的茎环二级结构的上游结构域。使用这部分apoII mRNA的RNA亲和层析程序被用于E-RmRNASF的纯化。为了进一步富集E-RmRNASF,需要在RNA亲和层析之前进行凝胶过滤(GF)层析步骤。涉及apoII mRNA从降解的体外稳定作用的功能测定法可用于在色谱过程中检测E-RmRNASF。 E-RmRNASF似乎是一种表观分子量为20-25kDa的蛋白质,通过SDS聚丙烯酰胺凝胶电泳可以看到。

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