Intermediary metabolism.

Bart P Braeckman, Koen Houthoofd, Jacques R Vanfleteren
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引用次数: 270

Abstract

Caenorhabditis elegans has orthologs for most of the key enzymes involved in eukaryotic intermediary metabolism, suggesting that the major metabolic pathways are probably present in this species. We discuss how metabolic patterns and activity change as the worm traverses development and ages, or responds to unfavorable external factors, such as temperature extremes or shortages in food or oxygen. Dauer diapause is marked by an enhanced resistance to oxidative stress and a shift toward microaerobic and anaplerotic metabolic pathways and hypometabolism, as indicated by the increased importance of the malate dismutation and glyoxylate pathways and the repression of citric acid cycle activity. These alterations promote prolonged survival of the dauer larva; some of these changes also accompany the extended lifespan of insulin/IGF-1 and several mitochondrial mutants. We also present a brief overview of the nutritional requirements, energy storage and waste products generated by C. elegans.

中间代谢。
秀丽隐杆线虫参与真核生物中间代谢的大多数关键酶具有同源物,这表明主要的代谢途径可能存在于该物种中。我们讨论了代谢模式和活动如何随着蠕虫的发育和衰老而变化,或对不利的外部因素(如极端温度或食物或氧气短缺)做出反应。daer滞育的特征是对氧化应激的抵抗力增强,向微氧和无氧代谢途径和低代谢途径转变,苹果酸突变和乙醛酸途径的重要性增加以及柠檬酸循环活性的抑制表明了这一点。这些变化促进了幼虫的长期存活;其中一些变化也伴随着胰岛素/IGF-1和一些线粒体突变体的寿命延长。我们还简要介绍了秀丽隐杆线虫的营养需求、能量储存和产生的废物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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