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A Surveillance Pathway Monitors the Fitness of the Endoplasmic Reticulum to Control Its Inheritance

机译:监测途径监测内质网的适应性以控制其遗传

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The endoplasmic reticulum (ER) plays an essential role in the production of lipids and secretory proteins. Because the ER cannot be generated de novo, it must be faithfully transmitted or divided at each cell division. Little is known of how cells monitor the functionality of the ER during the cell cycle or how this regulates inheritance. We report here that ER stress in S. cerevisiae activates the MAP kinase Slt2 in a new ER stress surveillance (ERSU) pathway, independent of the unfolded protein response. Upon ER stress, ERSU alters the septin complex to delay ER inheritance and cytokinesis. In the absence of Slt2 kinase, the stressed ER is transmitted to the daughter cell, causing the death of both mother and daughter cells. Furthermore, Slt2 is activated via the cell surface receptor Wsc1 by a previously undescribed mechanism. We conclude that the ERSU pathway ensures inheritance of a functional ER.
机译:内质网(ER)在脂质和分泌蛋白的产生中起重要作用。由于无法从头生成ER,因此必须在每个小区划分中忠实地传输或划分ER。人们对细胞如何在细胞周期内监视ER的功能或如何调节遗传性知之甚少。我们在这里报告,在啤酒酵母中的内质网应激激活了新的内质网应激监测(ERSU)途径中的MAP激酶Slt2,独立于未折叠的蛋白质反应。在内质网应激时,ERSU改变Septin复合物以延迟内质网遗传和胞质分裂。在不存在Slt2激酶的情况下,应激的ER传递至子细胞,导致母细胞和子细胞死亡。此外,通过先前未描述的机制经由细胞表面受体Wsc1激活Slt2。我们得出结论,ERSU途径可确保功能性ER的遗传。

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