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Multilevel regulation of endoplasmic reticulum stress responses in plants: where old roads and new paths meet

机译:植物内质网应力反应的多级调节:旧道路和新道路相遇的地方

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摘要

The sessile lifestyle of plants requires them to cope with a multitude of stresses in situ. In response to diverse environmental and intracellular cues, plant cells respond by massive reprogramming of transcription and translation of stress response regulators, many of which rely on endoplasmic reticulum (ER) processing. This increased protein synthesis could exceed the capacity of precise protein quality control, leading to the accumulation of unfolded and/or misfolded proteins that triggers the unfolded protein response (UPR). Such cellular stress responses are multilayered and executed in different cellular compartments. Here, we will discuss the three main branches of UPR signaling in diverse eukaryotic systems, and describe various levels of ER stress response regulation that encompass transcriptional gene regulation by master transcription factors, post-transcriptional activities including cytoplasmic splicing, translational control, and multiple post-translational events such as peptide modifications and cleavage. In addition, we will discuss the roles of plant ER stress sensors in abiotic and biotic stress responses and speculate on the future prospects of engineering these signaling events for heightened stress tolerance.
机译:植物的绝塞生活方式需要他们以原位应对大量的压力。响应于不同的环境和细胞内提示,植物细胞通过大规模重新编程转录和应力反应调节剂的翻译,其中许多依赖于内质网(ER)加工。这种增加的蛋白质合成可能超过精确蛋白质质量控​​制的能力,导致展开和/或错误折叠的蛋白质的积累,触发展开的蛋白质反应(UPR)。这种细胞应激反应是多层的并在不同的细胞室中执行。在这里,我们将讨论各种真核系统中UPR信号传导的三个主要分支,并描述各种水平的ER应激响应调控,通过母体转录因子,转录后的活动,包括细胞质剪接,翻译控制和多个帖子的转录后活动 - 诸如肽修饰和裂解之类的改性事件。此外,我们将讨论植物ER应激传感器在非生物和生物应激响应中的作用,并推测工程的未来前景这些信号传导事件,以实现应力耐受性。

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