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秀丽隐杆线虫中乙醛酸循环表达的诱导:幼虫发育全过程中的禁食反应。

Induction of glyoxylate cycle expression in Caenorhabditis elegans: a fasting response throughout larval development.

作者信息

Liu F, Thatcher J D, Epstein H F

机构信息

Department of Neurology, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Biochemistry. 1997 Jan 7;36(1):255-60. doi: 10.1021/bi9623800.

Abstract

The mRNA and the bifunctional protein for the two glyoxylate cycle (GC) enzymes, isocitrate lyase and malate synthase, are expressed in a tissue- and stage-specific pattern in Caenorhabditis elegans. Since expression of the two enzymes for the carbon-conserving glyoxylate cycle is regulated by the availability of carbon sources in microorganisms, we have studied the bifunctional GCP gene expression under fasting conditions and in certain mutants of C. elegans in order to understand possible mechanisms regulating its expression during nematode development. The GCP mRNA and protein levels were elevated in early larvae which were never fed, a result consistent with previous enzyme activity measurements (Khan, F.R., & McFadden, B.A. (1982) Exp. Parasitol. 54, 48-54]. However, larvae of later stages also expressed higher levels of GCP mRNA and protein when they were shifted from normal to fasting growing conditions. The GCP expression appeared to be regulated primarily at the transcriptional level throughout development. Although the expression of both the GCP gene and lin-14 peaks at about the same time during development and are induced by fasting, the regulation of the GCP gene is independent of the heterochronic lin-14 control mechanism of postembryonic lineages, as demonstrated by the fact that there was no significant change of the GCP at both mRNA and protein levels in the heterochronic lin-4 (lf) and lin-14 (gf) mutants compared to the wild type.

摘要

编码乙醛酸循环(GC)的两种酶(异柠檬酸裂解酶和苹果酸合酶)的mRNA和双功能蛋白,在秀丽隐杆线虫中以组织和阶段特异性模式表达。由于微生物中碳守恒乙醛酸循环的这两种酶的表达受碳源可用性的调节,我们研究了禁食条件下以及秀丽隐杆线虫某些突变体中双功能GCP基因的表达,以了解线虫发育过程中调节其表达的可能机制。从未进食的早期幼虫中GCP mRNA和蛋白水平升高,这一结果与先前的酶活性测量结果一致(Khan, F.R., & McFadden, B.A. (1982) Exp. Parasitol. 54, 48 - 54])。然而,当后期幼虫从正常生长条件转变为禁食生长条件时,它们也表达更高水平的GCP mRNA和蛋白。在整个发育过程中,GCP的表达似乎主要在转录水平受到调节。尽管GCP基因和lin-14的表达在发育过程中大约在同一时间达到峰值,并且都由禁食诱导,但GCP基因的调节独立于胚胎后谱系的异时性lin-14控制机制,这一事实表明,与野生型相比,异时性lin-4(功能缺失)和lin-14(功能获得)突变体中GCP的mRNA和蛋白水平均无显著变化。

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