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首页> 外文期刊>Development >A conserved metalloprotease mediates ecdysis in Caenorhabditis elegans.
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A conserved metalloprotease mediates ecdysis in Caenorhabditis elegans.

机译:保守的金属蛋白酶介导秀丽隐杆线虫的蜕皮。

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摘要

Molting is required for progression between larval stages in the life cycle of nematodes. We have identified four mutant alleles of a Caenorhabditis elegans metalloprotease gene, nas-37, that cause incomplete ecdysis. At each molt the cuticle fails to open sufficiently at the anterior end and the partially shed cuticle is dragged behind the animal. The gene is expressed in hypodermal cells 4 hours before ecdysis during all larval stages. The NAS-37 protein accumulates in the anterior cuticle and is shed in the cuticle after ecdysis. This pattern of protein accumulation places NAS-37 in the right place and at the right time to degrade the cuticle to facilitate ecdysis. The nas-37 gene has orthologs in other nematode species, including parasitic nematodes, and they undergo a similar shedding process. For example, Haemonchus contortus molts by digesting a ring of cuticle at the tip of the nose. Incubating Haemonchus larvae in extracted exsheathing fluids causes a refractile ring of digested cuticle to form at the tip of the nose. When Haemonchus cuticles are incubated with purified NAS-37, a similar refractile ring forms. NAS-37 degradation of the Haemonchus cuticle suggests that the metalloproteases and the cuticle substrates involved in exsheathment of parasitic nematodes are conserved in free-living nematodes.
机译:在线虫生命周期的幼虫阶段之间需要蜕皮。我们已经确定了秀丽隐杆线虫金属蛋白酶基因nas-37的四个突变等位基因,它们导致不完全蜕皮。在每个蜕皮处,角质层在前端均无法充分打开,部分脱落的角质层被拖到动物后方。在所有幼虫期蜕皮前4小时,该基因在皮下细胞中表达。 NAS-37蛋白积聚在前角质层中,蜕皮后脱落在角质层中。这种蛋白质积累的模式将NAS-37放置在正确的位置,并在正确的时间降解角质层以促进蜕皮。 nas-37基因在其他线虫物种(包括寄生线虫)中具有直系同源物,并且它们经历类似的脱落过程。例如,捻转血矛线虫(Haemonchus contortus)通过消化鼻尖的角质层环而蜕皮。在提取的分泌液中培养Haemonchus幼虫会在鼻尖形成消化后的角质层的折射环。当Haemonchus表皮与纯化的NAS-37一起孵育时,会形成类似的折射环。 NAS-37对Haemonchus角质层的降解表明,与金属线虫蛋白酶和表皮基质有关的寄生线虫的外皮在自由生活的线虫中是保守的。

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