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首页> 外文期刊>The Journal of biological chemistry >Mutation for Nonsyndromic Mental Retardation in the trans-2-Enoyl-CoA Reductase TER Gene Involved in Fatty Acid Elongation Impairs the Enzyme Activity and Stability, Leading to Change in Sphingolipid Profile
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Mutation for Nonsyndromic Mental Retardation in the trans-2-Enoyl-CoA Reductase TER Gene Involved in Fatty Acid Elongation Impairs the Enzyme Activity and Stability, Leading to Change in Sphingolipid Profile

机译:参与脂肪酸伸长型脂肪酸伸长率的反式-2-烯丙基CoA还原酶TER基因中的非合成蛋白迟滞的突变损害了酶活性和稳定性,导致鞘脂曲线的变化

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Very long-chain fatty acids (VLCFAs, chain length >C20) exist in tissues throughout the body and are synthesized by repetition of the fatty acid (FA) elongation cycle composed of four successive enzymatic reactions. In mammals, the TER gene is the only gene encoding trans-2-enoyl-CoA reductase, which catalyzes the fourth reaction in the FA elongation cycle. The TER P182L mutation is the pathogenic mutation for nonsyndromic mental retardation. This mutation substitutes a leucine for a proline residue at amino acid 182 in the TER enzyme. Currently, the mechanism by which the TER P182L mutation causes nonsyndromic mental retardation is unknown. To understand the effect of this mutation on the TER enzyme and VLCFA synthesis, we have biochemically characterized the TER P182L mutant enzyme using yeast and mammalian cells transfected with the TER P182L mutant gene and analyzed the FA elongation cycle in the B-lymphoblastoid cell line with the homozygous TER P182L mutation (TERP182L/P182L B-lymphoblastoid cell line). We have found that TER P182L mutant enzyme exhibits reduced trans-2-enoyl-CoA reductase activity and protein stability, thereby impairing VLCFA synthesis and, in turn, altering the sphingolipid profile (i.e. decreased level of C24 sphingomyelin and C24 ceramide) in the TERP182L/P182L B-lymphoblastoid cell line. We have also found that in addition to the TER enzyme-catalyzed fourth reaction, the third reaction in the FA elongation cycle is affected by the TER P182L mutation. These findings provide new insight into the biochemical defects associated with this genetic mutation.
机译:在整个身体的组织中存在非常长链脂肪酸(VLCFA,链长> C20),并通过重复由四个连续的酶促反应组成的脂肪酸(FA)伸长循环来合成。在哺乳动物中,TER基因是编码反式2-烯-COA还原酶的唯一基因,其催化FA伸长循环中的第四反应。 TER P182L突变是非族霉菌迟滞的致病性突变。该突变将亮氨酸代替于氨基酸182的脯氨酸残基。目前,TER P182L突变导致非妇女精神发育迟滞的机制是未知的。要了解该突变对TER酶和VLCFA合成的影响,我们使用用TER P182L突变基因转染的酵母和哺乳动物细胞生物化学表征TER P182L突变酶,并分析了B淋巴母细胞系中的FA伸长循环纯合时P182L突变(TERP182L / P182L B淋巴母细胞系)。我们发现TER P182L突变酶表现出降低的反式-2-烯-COA还原酶活性和蛋白质稳定性,从而损害VLCFA合成,然后在TERP182L中改变鞘脂素(即C24鞘粉和C24神经酰胺的水平降低) / P182L B淋巴母细胞系。我们还发现,除了TER酶催化的第四反应之外,FA伸长循环中的第三反应受TER P182L突变的影响。这些发现提供了新的洞察与这种遗传突变相关的生化缺陷。

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