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首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: ATF6α/β-mediated adjustment of ER chaperone levels is essential for development of the notochord in medaka fish
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A Highlights from MBoC Selection: ATF6α/β-mediated adjustment of ER chaperone levels is essential for development of the notochord in medaka fish

机译:MBoC选择的亮点:ATF6α/β介导的ER伴侣水平调节对于鱼中脊索的发育至关重要

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ATF6α and ATF6β are membrane-bound transcription factors activated by regulated intramembrane proteolysis in response to endoplasmic reticulum (ER) stress to induce various ER quality control proteins. ATF6α - and ATF6β single-knockout mice develop normally, but ATF6α/β double knockout causes embryonic lethality, the reason for which is unknown. Here we show in medaka fish that ATF6α is primarily responsible for transcriptional induction of the major ER chaperone BiP and that ATF6α/β double knockout, but not ATF6α- or ATF6β single knockout, causes embryonic lethality, as in mice. Analyses of ER stress reporters reveal that ER stress occurs physiologically during medaka early embryonic development, particularly in the brain, otic vesicle, and notochord, resulting in ATF6α- and ATF6β-mediated induction of BiP, and that knockdown of the α1 chain of type VIII collagen reduces such ER stress. The absence of transcriptional induction of several ER chaperones in ATF6α/β double knockout causes more profound ER stress and impaired notochord development, which is partially rescued by overexpression of BiP. Thus ATF6α/β-mediated adjustment of chaperone levels to increased demands in the ER is essential for development of the notochord, which synthesizes and secretes large amounts of extracellular matrix proteins to serve as the body axis before formation of the vertebra.
机译:ATF6α和ATF6β是受膜内蛋白水解激活的膜结合转录因子,可响应内质网(ER)应激诱导各种ER质量控制蛋白。 ATF6α-和ATF6β单敲除小鼠正常发育,但ATF6α/β双敲除会导致胚胎致死,其原因尚不清楚。在这里,我们在青aka鱼中显示,ATF6α主要负责主要ER伴侣BiP的转录诱导,而ATF6α/β双敲除(而不是ATF6α-或ATF6β单敲除)引起胚胎致死性,如小鼠。对内质网应激报告者的分析表明,内质网应激在生理上发生在花aka早期胚胎发育过程中,特别是在脑,耳囊和脊索中,导致ATF6α和ATF6β介导的BiP诱导,以及VIII型α1链的敲除胶原蛋白减少了这种内质网应激。在ATF6α/β双敲除中缺少几个ER伴侣的转录诱导会导致更深的ER应激和脊索发育受损,这可以通过BiP的过表达部分挽救。因此,ATF6α/β介导的伴侣分子水平调节以适应内质网中增加的需求对于脊索的发展至关重要,该脊索在椎骨形成之前合成并分泌大量细胞外基质蛋白作为体轴。

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