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Rtn1p Is Involved in Structuring the Cortical Endoplasmic Reticulum

机译:Rtn1p参与构建皮质内质网

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The endoplasmic reticulum (ER) contains both cisternal and reticular elements in one contiguous structure. We identified rtn1Δ in a systematic screen for yeast mutants with altered ER morphology. The ER in rtn1Δ cells is predominantly cisternal rather than reticular, yet the net surface area of ER is not significantly changed. Rtn1-green fluorescent protein (GFP) associates with the reticular ER at the cell cortex and with the tubules that connect the cortical ER to the nuclear envelope, but not with the nuclear envelope itself. Rtn1p overexpression also results in an altered ER structure. Rtn proteins are found on the ER in a wide range of eukaryotes and are defined by two membrane-spanning domains flanking a conserved hydrophilic loop. Our results suggest that Rtn proteins may direct the formation of reticulated ER. We independently identified Rtn1p in a proteomic screen for proteins associated with the exocyst vesicle tethering complex. The conserved hydophilic loop of Rtn1p binds to the exocyst subunit Sec6p. Overexpression of this loop results in a modest accumulation of secretory vesicles, suggesting impaired exocyst function. The interaction of Rtn1p with the exocyst at the bud tip may trigger the formation of a cortical ER network in yeast buds.
机译:内质网(ER)包含一个连续结构中的脑池和网状元素。我们在ER形态发生改变的酵母突变体的系统筛选中鉴定了rtn1Δ。 rtn1Δ细胞中的ER主要为脑池而不是网状,但ER的净表面积没有明显变化。 Rtn1-绿色荧光蛋白(GFP)与细胞皮质的网状ER以及将皮质ER连接至核膜的小管相关,但与核膜本身无关。 Rtn1p过表达也会导致ER结构的改变。 Rtn蛋白存在于ER的各种真核生物中,由两个跨膜结构域(位于一个保守的亲水环旁)定义。我们的结果表明Rtn蛋白可能指导网状ER的形成。我们在蛋白质组学筛查中独立地鉴定了Rtn1p与囊泡囊泡束缚复合物相关的蛋白质。 Rtn1p的保守的亲水环与囊外亚基Sec6p结合。该环的过表达导致分泌性囊泡适度积累,提示囊泡功能受损。 Rtn1p与芽尖端的囊泡的相互作用可能触发酵母芽中皮质ER网络的形成。

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