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Regulation of the early stages of endoplasmic reticulum inheritance during ER stress

机译:在ER压力期间调节内质网遗传的早期阶段

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The endoplasmic reticulum (ER) is one of the largest cytoplasmic organelles in eukaryotic cells and plays a role in many cellular processes, such as the production and quality control of secretory protein, lipid synthesis, and calcium homeostasis. The ER cannot be generated de novo , and thus its proper inheritance during cell division is paramount to the health and survival of the daughter cells. Although previous work has uncovered the cytoskeletal components involved, we still lack a comprehensive understanding of the intricate steps of and the cytoplasmic and membrane-bound components involved in ER inheritance. To directly address these issues, we utilized microfluidics and genetic analyses to show that before nuclear migration, early ER inheritance can be further divided into three distinctive steps. Moreover, we demonstrated that perturbing each of these steps affects the cell’s ability to mitigate ER stress. Thus, proper ER inheritance is essential to ensuring a healthy, functional cell.
机译:内质网(ER)是真核细胞中最大的细胞质细胞器之一,并在许多细胞过程中起作用,例如分泌蛋白,脂质合成和钙稳态的生产和质量控制。 ER不能生成De Novo,因此其在细胞分裂期间的适当继承至关重要的是女儿细胞的健康和生存。虽然以前的工作已经未覆盖涉及的细胞骨骼组分,但我们仍然缺乏对彼得遗传的复杂步骤和细胞质和膜结合成分的全面了解。要直接解决这些问题,我们利用了微流体和遗传分析来表明,在核迁移之前,早期的ER遗传可以进一步分为三个独特的步骤。此外,我们证明扰动这些步骤影响了细胞减轻了ER压力的能力。因此,适当的ER遗传对于确保健康的功能细胞至关重要。

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