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The nuclear receptor gene nhr-25 plays multiple roles in the Caenorhabditis elegans heterochronic gene network to control the larva-to-adult transition

机译:核受体基因nhr-25在秀丽隐杆线虫异时基因网络中扮演多个角色,以控制幼虫到成人的过渡

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摘要

Developmental timing in the nematode Caenorhabditis elegans is controlled by heterochronic genes, mutations in which cause changes in the relative timing of developmental events. One of the heterochronic genes, let-7, encodes a microRNA that is highly evolutionarily conserved, suggesting that similar genetic pathways control developmental timing across phyla. Here we report that the nuclear receptor nhr-25, which belongs to the evolutionarily conserved fushi tarazu-factor 1/nuclear receptor NR5A subfamily, interacts with heterochronic genes that regulate the larva-to-adult transition in C. elegans. We identified nhr-25 as a regulator of apl-1, a homolog of the Alzheimeru27s amyloid precursor protein-like gene that is downstream of let-7 family microRNAs. NHR-25 controls not only apl-1 expression but also regulates developmental progression in the larva-to-adult transition. NHR-25 negatively regulates the expression of the adult-specific collagen gene col-19 in lateral epidermal seam cells. In contrast, NHR-25 positively regulates the larva-to-adult transition for other timed events in seam cells, such as cell fusion, cell division and alae formation. The genetic relationships between nhr-25 and other heterochronic genes are strikingly varied among several adult developmental events. We propose that nhr-25 has multiple roles in both promoting and inhibiting the C. elegans heterochronic gene pathway controlling adult differentiation programs.
机译:线虫秀丽隐杆线虫的发育时间受异时基因控制,这些突变引起发育事件的相对时间发生变化。异时基因之一,let-7,编码高度进化保守的microRNA,表明相似的遗传途径控制着整个门的发育时间。在这里我们报告核受体nhr-25,属于进化上保守的fushi tarazu因子1 /核受体NR5A亚家族,与调控秀丽隐杆线虫幼虫到成虫过渡的异时基因相互作用。我们将nhr-25鉴定为apl-1的调节子,apl-1是let-7家族microRNA下游的Alzheimer u27s淀粉样前体蛋白样基因的同源物。 NHR-25不仅控制apl-1的表达,而且还调节幼虫到成人过渡的发育进程。 NHR-25负调节成年特异性胶原基因col-19在外侧表皮接缝细胞中的表达。相反,对于接缝细胞中的其他定时事件,例如细胞融合,细胞分裂和毛形成,NHR-25会积极调节幼虫到成虫的转变。在几个成人发育事件中,nhr-25与其他异时基因之间的遗传关系显着不同。我们建议nhr-25在促进和抑制线虫异时基因通道控制成年分化程序中具有多种作用。

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