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Auxin confers protection against ER stress in

机译:助生素赋予了防止呃压力的保护

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摘要

Auxins are plant growth regulators that influence most aspects of plant development through complex mechanisms. The development of an auxin-inducible degradation (AID) system has enabled rapid, conditional protein depletion in yeast and cultured cells. More recently, the system was successfully adapted to Caenorhabditiselegans to achieve auxin-dependent degradation of targets in all tissues and developmental stages. Whether auxin treatment alone has an impact on nematode physiology is an open question. Here we show that indole-3-acetic acid (IAA), the auxin most commonly used to trigger AID in worms, functions through the conserved IRE-1/XBP-1 branch of the Unfolded Protein Response (UPR) to promote resistance to endoplasmic reticulum (ER) stress. Because the UPR not only plays a central role in restoring ER homeostasis, but also promotes lipid biosynthesis and regulates lifespan, we suggest that extreme caution should be exercised when using the AID system to study these and related processes.
机译:植物素是植物生长调节剂,通过复杂的机制影响植物开发的大部分方面。植物素诱导型降解(AID)系统的发展在酵母和培养细胞中能够快速,有条件的蛋白质耗尽。最近,该系统成功适应Caenorhabditis秀丽隐形,实现了所有组织和发育阶段的目标依赖性降解。无论单独的植物素治疗是否对线虫生理产生了影响,是一个开放的问题。在这里,我们表明吲哚-3-乙酸(IAA),最常用于触发蠕虫的助力,通过展开蛋白质反应(UPR)的保守的IRE-1 / XBP-1分支来促进内质网状(ER)压力。由于UPR不仅在恢复ER稳态方面发挥着核心作用,而且促进了脂质生物合成和调节寿命,我们建议使用援助系统研究这些和相关过程时应极度谨慎。

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