Kulalert Warakorn, Sadeeshkumar Harini, Zhang Ying K, Schroeder Frank C, Kim Dennis H
Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139.
Boyce Thompson Institute, Cornell University, Ithaca, New York 14853.
Genetics. 2017 May;206(1):251-263. doi: 10.1534/genetics.117.200568. Epub 2017 Mar 14.
Cell-nonautonomous effects of signaling in the nervous system of animals can influence diverse aspects of organismal physiology. We previously showed that phosphorylation of Ser49 of the α-subunit of eukaryotic translation initiation factor 2 (eIF2α) in two chemosensory neurons by PEK-1/PERK promotes entry of into dauer diapause. Here, we identified and characterized the molecular determinants that confer sensitivity to effects of neuronal eIF2α phosphorylation on development and physiology of Isolation and characterization of mutations in encoding the α-subunit of eIF2B support a conserved role, previously established by studies in yeast, for eIF2Bα in providing a binding site for phosphorylated eIF2α to inhibit the exchange factor eIF2B catalytic activity that is required for translation initiation. We also identified a mutation in , encoding the γ-subunit of eIF2, which confers insensitivity to the effects of phosphorylated eIF2α while also altering the requirement for eIF2Bγ. In addition, we show that constitutive expression of eIF2α carrying a phosphomimetic S49D mutation in the ASI pair of sensory neurons confers dramatic effects on growth, metabolism, and reproduction in adult transgenic animals, phenocopying systemic responses to starvation. Furthermore, we show that constitutive expression of eIF2α carrying a phosphomimetic S49D mutation in the ASI neurons enhances dauer entry through bypassing the requirement for nutritionally deficient conditions. Our data suggest that the state of eIF2α phosphorylation in the ASI sensory neuron pair may modulate internal nutrient sensing and signaling pathways, with corresponding organismal effects on development and metabolism.
动物神经系统中信号传导的细胞非自主效应可影响机体生理的多个方面。我们之前表明,PEK-1/PERK使两个化学感应神经元中的真核翻译起始因子2(eIF2α)α亚基的Ser49磷酸化,促进其进入 dauer 滞育期。在这里,我们鉴定并表征了赋予线虫对神经元eIF2α磷酸化对其发育和生理影响敏感性的分子决定因素。对编码eIF2Bα亚基的基因突变进行分离和表征,支持了酵母研究先前确立的eIF2Bα的保守作用,即提供一个结合位点,使磷酸化的eIF2α抑制翻译起始所需的交换因子eIF2B催化活性。我们还在编码eIF2γ亚基的基因中鉴定出一个突变,该突变赋予线虫对磷酸化eIF2α影响的不敏感性,同时也改变了对eIF2Bγ的需求。此外,我们表明,在ASI感觉神经元对中组成型表达携带磷酸模拟物S49D突变的eIF2α,对成年转基因动物的生长、代谢和繁殖具有显著影响,模拟了对饥饿的全身反应。此外,我们表明,在ASI神经元中组成型表达携带磷酸模拟物S49D突变的eIF2α,通过绕过对营养缺乏条件的需求,增强了 dauer 进入。我们的数据表明,ASI感觉神经元对中eIF2α的磷酸化状态可能调节内部营养感应和信号通路,对发育和代谢产生相应的机体影响。