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The optional long 5′-untranslated region of human ACAT1 mRNAs impairs the production of ACAT1 protein by promoting its mRNA decay

机译:人类ACAT1 mRNA的任选5'长非翻译区通过促进其mRNA衰减而损害ACAT1蛋白的产生

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We have previously reported that human ACAT1 mRNAs produce the 50 kDa protein using the AUG1397–1399 initiation codon, and also a minor 56 kDa isoform using the upstream in-frame GGC1274–1276 initiation codon. The GGC1274–1276 codon is located at the optional long 5′-untranslated region (5′-UTR, nt 1–1396) of the mRNAs. The DNA sequences corresponding to this 5′-UTR are located in two different chromosomes, 7 and 1. In the current work, we report that the optional long 5′-UTR significantly impairs the production of human ACAT1 protein initiated from the AUG1397–1399 codon, mainly by promoting its mRNA decay. The western blot analyses indicated that the optional long 5′-UTR potently impaired the production of different proteins initiated from the AUG1397–1399 codon, meaning that this impairing effect was not influenced by the 3′-UTR or the coding sequence of ACAT1 mRNA. The results of reverse transcription-quantitative polymerase chain reaction demonstrated that this 5′-UTR dramatically reduced the contents of its linked mRNAs. Analyses of the protein to mRNA ratios showed that this 5′-UTR mainly decreased its mRNA stability rather than altering its translational efficiency. We next performed the plasmid transfection experiments and used actinomycin D to inhibit transcription. The results showed that this 5′-UTR promoted its mRNA decay. Additional transfection and nucleofection experiments using RNAs prepared in vitro illustrated that, in both the cytoplasm and the nucleus of cells, the optional long 5′-UTR-linked mRNAs decayed faster than those without the link. Overall, our study brings new insight to the regulation of the human ACAT1 gene expression at the post-transcription level.
机译:我们以前曾报道过,人类ACAT1 mRNA使用AUG 1397-1399 起始密码子产生50 kDa的蛋白质,并使用上游框内GGC 1274-1276 < / sub>起始密码子。 GGC 1274–1276 密码子位于mRNA的可选5'长非翻译区(5'-UTR,nt 1-1396)。与此5'-UTR相对应的DNA序列位于两个不同的染色体7和1。在当前工作中,我们报道了可选的5'-UTR长序列显着削弱了由AUG 1397–1399 密码子,主要是通过促进其mRNA衰减来实现的。蛋白质印迹分析表明,可选的长5'-UTR可能会削弱源自AUG 1397-1399 密码子的不同蛋白质的产生,这意味着该削弱作用不受3'-UTR的影响或ACAT1 mRNA的编码序列。逆转录-定量聚合酶链反应的结果表明,这种5'-UTR大大降低了其连接的mRNA的含量。蛋白质与mRNA比率的分析表明,该5'-UTR主要降低其mRNA稳定性,而不是改变其翻译效率。接下来,我们进行质粒转染实验,并使用放线菌素D抑制转录。结果表明,该5'-UTR促进了其mRNA衰减。使用体外制备的RNA进行的其他转染和核转染实验表明,在细胞质和细胞核中,可选的长5'-UTR连接的mRNA的衰变速度都快于没有连接的mRNA。总体而言,我们的研究为转录后水平的人类ACAT1基因表达调控提供了新的见识。

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