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SAGE研究秀丽隐杆线虫的碳水化合物代谢:长寿的 dauer 幼虫厌氧转变的证据。

SAGE surveys C. elegans carbohydrate metabolism: evidence for an anaerobic shift in the long-lived dauer larva.

作者信息

Holt Suzan J, Riddle Donald L

机构信息

Division of Biological Sciences and Molecular Biology Program, 311 Tucker Hall, University of Missouri, Columbia, MO 65211, USA.

出版信息

Mech Ageing Dev. 2003 Jul;124(7):779-800. doi: 10.1016/s0047-6374(03)00132-5.

DOI:10.1016/s0047-6374(03)00132-5
PMID:12875742
Abstract

The dauer larva, a non-feeding and developmentally arrested stage of the free-living nematode Caenorhabditis elegans, is morphologically and physiologically specialized for survival and dispersal during adverse growth conditions. The ability of dauer larvae to live several times longer than the continuous developmental life span has been attributed in part to a repressed metabolism. We used serial analysis of gene expression (SAGE) profiles from dauer larvae and mixed growing stages to compare expression patterns for genes with known or predicted roles in glycolysis, gluconeogenesis, glycogen metabolism, the Krebs and glyoxylate cycles, and selected fermentation pathways. Ratios of mixed:dauer transcripts indicated non-dauer enrichment that was consistent with previously determined adult:dauer enzyme activity ratios for hexokinase (glycolysis), phosphoenolpyruvate carboxykinase and fructose 1,6-bisphosphatase (gluconeogenesis), isocitrate dehydrogenase (NADP-dependent), and isocitrate lyase-malate synthase (glyoxylate cycle). Transcripts for the majority of Krebs cycle components were not differentially represented in the two profiles. Transcript abundance for pyruvate kinase, alcohol dehydrogenase, a putative cytosolic fumarate reductase, two pyruvate dehydrogenase components, and a succinyl CoA synthetase alpha subunit implied that anaerobic pathways were upregulated in dauer larvae. Generation of nutritive fermentation byproducts and the moderation of oxidative damage are potential benefits of a hypoxic dauer interior.

摘要

dauer幼虫是自由生活的线虫秀丽隐杆线虫的一个不进食且发育停滞的阶段,在形态和生理上专门用于在不利生长条件下生存和扩散。dauer幼虫比连续发育寿命活得长几倍的能力部分归因于代谢受到抑制。我们使用来自dauer幼虫和混合生长阶段的基因表达序列分析(SAGE)图谱,比较了在糖酵解、糖异生、糖原代谢、三羧酸循环和乙醛酸循环以及选定发酵途径中具有已知或预测作用的基因的表达模式。混合:dauer转录本的比率表明非dauer富集,这与先前确定的己糖激酶(糖酵解)、磷酸烯醇式丙酮酸羧激酶和果糖1,6-二磷酸酶(糖异生)、异柠檬酸脱氢酶(NADP依赖性)以及异柠檬酸裂解酶-苹果酸合酶(乙醛酸循环)的成虫:dauer酶活性比率一致。大多数三羧酸循环成分的转录本在这两个图谱中没有差异表现。丙酮酸激酶、乙醇脱氢酶、一种假定的胞质延胡索酸还原酶、两种丙酮酸脱氢酶成分以及琥珀酰辅酶A合成酶α亚基的转录本丰度表明厌氧途径在dauer幼虫中上调。产生营养性发酵副产物和减轻氧化损伤是低氧dauer内部的潜在益处。

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