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肾上腺素对3T3-L1细胞中脂蛋白脂肪酶翻译的调控。3'非翻译区的重要性。

Regulation of lipoprotein lipase translation by epinephrine in 3T3-L1 cells. Importance of the 3' untranslated region.

作者信息

Yukht A, Davis R C, Ong J M, Ranganathan G, Kern P A

机构信息

Department of Medicine, Cedars-Sinai Medical Center, Los Angeles, California 90048, USA.

出版信息

J Clin Invest. 1995 Nov;96(5):2438-44. doi: 10.1172/JCI118301.

Abstract

Lipoprotein lipase (LPL) is a central enzyme in lipoprotein metabolism and is in part responsible for adipocyte lipid accumulation. Catecholamines are known to decrease the activity of LPL in adipocytes, and we have previously demonstrated that this inhibition occurs posttranscriptionally, with a prominent inhibition of LPL translation. To better characterize the inhibition of LPL translation, 3T3-L1 cells were differentiated into adipocytes, and exposed to epinephrine. Epinephrine induced a dose-dependent decrease in LPL synthesis using [35S]methionine incorporation, with no change in LPL mRNA levels, demonstrating translational regulation of LPL in this cell line. The poly A-enriched RNA from epinephrine-treated cells was translated well in vitro, and there was no difference in the polysome profiles from control and epinephrine-treated cells, suggesting that epinephrine did not affect mRNA editing, and did not induce an inhibition of translation initiation. To obtain evidence for the presence of an inhibitory factor, a cytoplasmic extract from control, and epinephrine-treated adipocytes was human. When compared to the control cell extract, the epinephrine-treated cell extract sharply inhibited LPL translation in vitro, yet had no effect on the translation of other mRNAs. Epinephrine-treated cells had fourfold more of this inhibitor activity than control cells, and this translation inhibition was partially reversed by heat treatment. To determine what region of the LPL mRNA was involved in the translation inhibition, different LPL constructs were synthesized. The inhibitory effect of the epinephrine-treated cell extract was dependent on the presence of the first 40 nucleotides of the 3' (untranslated region UTR) (nucleotides 1599-1638), whereas deletion of the 5' UTR and other areas of the 3' UTR had no effect on translation inhibition. When a sense RNA strand corresponding to this region was added to the in vitro translation reaction, it restored translation towards normal, suggesting that the sense strand was competing for a transacting binding protein. Thus, epinephrine-treated adipocytes produced a transacting factor, probably a protein, that interacted with a region on the LPL mRNA between nucleotides 1599 and 1638, resulting in an inhibition of translation. These studies add new insight into the hormonal regulation of LPL.

摘要

脂蛋白脂肪酶(LPL)是脂蛋白代谢中的一种关键酶,部分负责脂肪细胞脂质积累。已知儿茶酚胺会降低脂肪细胞中LPL的活性,并且我们之前已经证明这种抑制作用发生在转录后,对LPL翻译有显著抑制。为了更好地表征LPL翻译的抑制作用,将3T3 - L1细胞分化为脂肪细胞,并暴露于肾上腺素中。肾上腺素通过[35S]甲硫氨酸掺入诱导LPL合成呈剂量依赖性下降,而LPL mRNA水平无变化,表明该细胞系中LPL存在翻译调控。来自肾上腺素处理细胞的富含多聚A的RNA在体外翻译良好,并且对照细胞和肾上腺素处理细胞的多核糖体图谱没有差异,这表明肾上腺素不影响mRNA编辑,也不诱导翻译起始抑制。为了获得存在抑制因子的证据,对照细胞和肾上腺素处理的脂肪细胞的细胞质提取物是人源的。与对照细胞提取物相比,肾上腺素处理的细胞提取物在体外强烈抑制LPL翻译,但对其他mRNA的翻译没有影响。肾上腺素处理的细胞具有比对照细胞多四倍的这种抑制活性,并且这种翻译抑制通过热处理部分逆转。为了确定LPL mRNA的哪个区域参与翻译抑制,合成了不同的LPL构建体。肾上腺素处理的细胞提取物的抑制作用取决于3'非翻译区(UTR)(核苷酸1599 - 1638)的前40个核苷酸的存在,而5'UTR和3'UTR的其他区域的缺失对翻译抑制没有影响。当将对应于该区域的正义RNA链添加到体外翻译反应中时,它使翻译恢复正常,表明正义链在竞争一种反式作用结合蛋白。因此,肾上腺素处理的脂肪细胞产生了一种反式作用因子,可能是一种蛋白质,它与LPL mRNA上核苷酸1599和1638之间的区域相互作用,导致翻译抑制。这些研究为LPL的激素调节提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53a4/185896/85c4df595b92/jcinvest00017-0349-a.jpg

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