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Activation of nicotinic receptors uncouples a developmental timer from the molting timer in C. elegans.

机译:烟碱受体的激活使秀丽隐杆线虫的蜕皮定时器与发育定时器脱钩。

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摘要

C. elegans develops through four larval stages (L1 to L4) separated by molts. The identity of larval stages is mostly determined by stage-specific expression of heterochronic genes, which constitute an intrinsic genetic timer. However, extrinsic cues such as food availability or population density also modulate the developmental timing of C. elegans by mechanisms that remain largely unknown. To investigate a potential role of the nervous system in the temporal regulation of C. elegans development, we pharmacologically manipulated nicotinic neurotransmission, which represents a prominent signaling component in C. elegans nervous system. Exposure to the nicotinic agonist DMPP during post-embryonic development is lethal at the L2/L3 molt. Specifically, it delays cell divisions and differentiation during the L2 stage but does not affect the timing of the molt cycle, hence causing exposure of a defective L3 cuticle to the environment after the L2/L3 molt. Forcing development through a previously uncharacterized L2 diapause resynchronizes these events and suppresses DMPP-induced lethality. Nicotinic acetylcholine receptors (nAChRs) containing the UNC-63 subunit are required, probably in neurons, to trigger the action of DMPP. Using a forward genetic screen, we further demonstrated that the nuclear hormone receptor (NHR) DAF-12 is necessary to implement the developmental effects of DMPP. Therefore, a novel neuroendocrine pathway involving nAChRs and the NHR DAF-12 can control the speed of stage-specific developmental events in C. elegans. Activation of DMPP-sensitive nAChRs during the second larval stage uncouples a molting timer and a developmental timer, thus causing a heterochronic phenotype that is lethal at the subsequent molt.
机译:秀丽隐杆线虫通过蜕皮分离的四个幼虫阶段(L1至L4)发育。幼虫阶段的身份主要由异时基因的阶段特异性表达决定,后者构成了内在的遗传计时器。但是,诸如食物供应量或人口密度之类的外部线索也通过很大程度上未知的机制来调节秀丽隐杆线虫的发育时间。为了调查神经系统在秀丽隐杆线虫发育的时间调节中的潜在作用,我们进行了药理学控制的烟碱神经传递,这代表秀丽隐杆线虫神经系统中的重要信号成分。胚后发育过程中暴露于烟碱激动剂DMPP对L2 / L3蜕皮是致命的。具体而言,它在L2阶段延迟了细胞分裂和分化,但不影响蜕皮周期的时间,因此在L2 / L3蜕皮后导致有缺陷的L3表皮暴露于环境中。通过先前未表征的L2滞育来强迫发育重新同步这些事件并抑制DMPP致死率。可能在神经元中需要含有UNC-63亚基的烟碱乙酰胆碱受体(nAChRs)来触发DMPP的作用。使用前向遗传筛选,我们进一步证明了核激素受体(NHR)DAF-12对于实现DMPP的发育作用是必需的。因此,涉及nAChRs和NHR DAF-12的新型神经内分泌途径可以控制秀丽隐杆线虫的阶段特异性发育事件的速度。在第二个幼虫阶段,DMPP敏感的nAChRs的激活使蜕皮定时器和发育定时器解偶联,从而导致异时表型,该表型在随后的蜕皮中致死。

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