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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Rab7a modulates ER stress and ER morphology
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Rab7a modulates ER stress and ER morphology

机译:Rab7a调节是压力,是形态

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The Endoplasmic Reticulum (ER) is a membranous organelle with diverse structural and functional domains. Peripheral ER includes interconnected tubules, and dense tubular arrays called "ER matrices" together with bona fide flat cisternae. Transitions between these states are regulated by membrane-associated proteins and cytosolic factors. Recently, the small GTPases Rab10 and Rab18 were reported to control ER shape by regulating ER dynamics and fusion. Here, we present evidence that another Rab protein, Rab7a, modulates the ER morphology by controlling the ER homeostasis and ER stress. Indeed, inhibition of Rab7a expression by siRNA or expression of the dominant negative mutant Rab7aT22 N, leads to enlargement of sheet-like ER structures and spreading towards the cell periphery. Notably, such alterations are ascribable neither to a direct modulation of the ER shaping proteins Reticulon-4b and CLIMP63, nor to interactions with Protrudin, a Rab7a-binding protein known to affect the ER organization. Conversely, depletion of Rab7a leads to basal ER stress, in turn causing ER membrane expansion. Both ER enlargement and basal ER stress are reverted in rescue experiments by Rab7a re-expression, as well as by the ER chemical chaperone tauroursodeoxycholic acid (TUDCA). Collectively, these findings reveal a new role of Rab7a in ER homeostasis, and indicate that genetic and pharmacological ER stress manipulation may restore ER morphology in Rab7a silenced cells.
机译:内质网(ER)是一种具有不同结构和功能结构域的膜质细胞器。外围ER包括互连的小管,和致密的管状阵列与Bona Fling Cisternae一起称为“ER矩阵”。这些状态之间的转变由膜相关蛋白质和细胞溶质因子调节。最近,据报道,通过调节ER动力学和融合来控制小GTP酶RAB10和RAB18来控制ER形状。在这里,我们提出了另一种Rab蛋白,Rab7a,通过控制ER稳态和ER应力来调节ER形态。实际上,通过siRNA或显性负突变体Rab7AT22n的表达抑制Rab7a表达,导致片状ER结构的扩大并朝向细胞周边扩散。值得注意的是,这种改变既不是直接调制ER成型蛋白网状蛋白-4b和升高63,也不是与突出素相互作用,该蛋白质已知为影响ER组织的rab7a结合蛋白。相反,Rab7a的耗竭导致基础ER应激,反过来导致ER膜膨胀。通过Rab7a重新表达,以及Er化学伴侣氧化羰苯酸(Tudca),在Rab7a再表达中恢复ER扩大和基础ER应力。总的来说,这些发现揭示了Rab7a在ER稳态中的新作用,并表明遗传和药理ER应激操纵可以恢复RAB7A沉默细胞中的ER形态。

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