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Genetic analysis of hyl-1, the C. elegans homolog of LAG1/LASS1

机译:LAG1 / LASS1秀丽隐杆线虫同源物hyl-1的遗传分析

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摘要

Yeast LAG1 was one of the first longevity genes found. Subsequent analysis showed that it encodes a component of ceramide synthase. Homologs of LAG1 have been identified in all eukaryotes examined for their presence, and multiple homologs are the norm. In human and mouse, the LAG1 counterpart is called LASS1. The involvement of this gene in determining yeast replicative life span led us to ask whether longevity effects could be found in C. elegans. Extended longevity was seen when we used RNAi to decrease expression of the worm homolog of LAG1, termed hyl-1, for Homolog of Yeast Longevity gene. In contrast, neither deletion of the gene nor overexpression resulted in life extension. There was no evidence that hyl-1 interacts with the insulin/IGF-1 like signaling pathway to specify longevity or dauer formation, nor were effects on stress resistance detected. Gene expression of hyl-1 homologs was altered in the deletion mutant and by RNAi, showing distinct evidence for compensation at the transcript level. These regulatory changes may explain the subtle phenotypic effects found under the conditions studied here.
机译:酵母LAG1是最早发现的长寿基因之一。随后的分析表明,它编码神经酰胺合酶的成分。 LAG1的同系物已在所有检查过的真核生物中鉴定出来,并且多个同系物是常态。在人类和小鼠中,LAG1对应物称为LASS1。该基因参与确定酵母复制寿命的过程使我们问起是否可以在秀丽隐杆线虫中发现长寿效应。当我们使用RNAi降低酵母长寿基因同系物LAG1的蠕虫同源物hyl-1的表达时,可以延长寿命。相反,基因的缺失或过表达都不会延长寿命。没有证据表明hyl-1与胰岛素/ IGF-1信号传导途径相互作用来确定长寿或dauer的形成,也没有发现对应激抗性的影响。在缺失突变体中和通过RNAi改变了hyl-1同源物的基因表达,显示了在转录水平上补偿的独特证据。这些调节变化可以解释在这里研究的条件下发现的细微表型效应。

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