首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Developmental Defects of Caenorhabditis elegans Lacking Branched-chain α-Ketoacid Dehydrogenase Are Mainly Caused by Monomethyl Branched-chain Fatty Acid Deficiency
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Developmental Defects of Caenorhabditis elegans Lacking Branched-chain α-Ketoacid Dehydrogenase Are Mainly Caused by Monomethyl Branched-chain Fatty Acid Deficiency

机译:秀丽隐杆线虫缺乏支链α-酮酸脱氢酶的发育缺陷主要是由单甲基支链脂肪酸缺乏引起的

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摘要

Branched-chain α-ketoacid dehydrogenase (BCKDH) catalyzes the critical step in the branched-chain amino acid (BCAA) catabolic pathway and has been the focus of extensive studies. Mutations in the complex disrupt many fundamental metabolic pathways and cause multiple human diseases including maple syrup urine disease (MSUD), autism, and other related neurological disorders. BCKDH may also be required for the synthesis of monomethyl branched-chain fatty acids (mmBCFAs) from BCAAs. The pathology of MSUD has been attributed mainly to BCAA accumulation, but the role of mmBCFA has not been evaluated. Here we show that disrupting BCKDH in Caenorhabditis elegans causes mmBCFA deficiency, in addition to BCAA accumulation. Worms with deficiency in BCKDH function manifest larval arrest and embryonic lethal phenotypes, and mmBCFA supplementation suppressed both without correcting BCAA levels. The majority of developmental defects caused by BCKDH deficiency may thus be attributed to lacking mmBCFAs in worms. Tissue-specific analysis shows that restoration of BCKDH function in multiple tissues can rescue the defects, but is especially effective in neurons. Taken together, we conclude that mmBCFA deficiency is largely responsible for the developmental defects in the worm and conceivably might also be a critical contributor to the pathology of human MSUD.
机译:支链α-酮酸脱氢酶(BCKDH)催化支链氨基酸(BCAA)分解代谢途径中的关键步骤,一直是广泛研究的重点。复合物中的突变破坏了许多基本的代谢途径,并导致多种人类疾病,包括枫糖浆尿病(MSUD),自闭症和其他相关的神经系统疾病。从BCAA合成单甲基支链脂肪酸(mmBCFA)可能还需要BCKDH。 MSUD的病理学主要归因于BCAA的积累,但尚未评估mmBCFA的作用。在这里,我们显示破坏秀丽隐杆线虫中的BCKDH会导致mmBCFA缺乏,以及BCAA积累。 BCKDH功能不足的蠕虫表现出幼虫停滞和胚胎致死表型,mmBCFA的添加抑制了这两种现象,而没有校正BCAA的水平。因此,由BCKDH缺乏引起的大多数发育缺陷可能归因于蠕虫中缺乏mmBCFA。组织特异性分析表明,在多个组织中恢复BCKDH功能可以挽救这些缺陷,但对神经元特别有效。两者合计,我们得出结论,mmBCFA缺乏是蠕虫中发育缺陷的主要原因,并且可以想象,这也可能是人类MSUD病理的关键因素。

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