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首页> 外文期刊>The Plant Cell >Five Arabidopsis Reticulon Isoforms Share Endoplasmic Reticulum Location, Topology, and Membrane-Shaping Properties
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Five Arabidopsis Reticulon Isoforms Share Endoplasmic Reticulum Location, Topology, and Membrane-Shaping Properties

机译:五个拟南芥网状同工型共享内质网的位置,拓扑和膜形成特性

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摘要

The cortical endoplasmic reticulum (ER) in tobacco (Nicotiana tabacum) epidermal cells is a network of tubules and cisternae undergoing dramatic rearrangements. Reticulons are integral membrane proteins involved in shaping ER tubules. Here, we characterized the localization, topology, effect, and interactions of five Arabidopsis thaliana reticulons (RTNs), isoforms 1-4 and 13, in the cortical ER. Our results indicate that RTNLB13 and RTNLB1-4 colocate to and constrict the tubular ER membrane. All five RTNs preferentially accumulate on ER tubules and are excluded from ER cisternae. All isoforms share the same transmembrane topology, with N and C termini facing the cytosol and four transmembrane domains. We show by Forster resonance energy transfer and fluorescence lifetime imaging microscopy that several RTNs have the capacity to interact with themselves and each other, and we suggest that oligomerization is responsible for their residence in the ER membrane. We also show that a complete reticulon homology domain is required for both RTN residence in high-curvature ER membranes and ER tubule constriction, yet it is not necessary for homotypic interactions.
机译:烟草(Nicotiana tabacum)表皮细胞中的皮质内质网(ER)是经历显着重排的小管和池的网络。网状蛋白是参与塑造ER小管的不可或缺的膜蛋白。在这里,我们表征了皮质ER中五个拟南芥网(RTNs),同工型1-4和13的定位,拓扑,效应和相互作用。我们的结果表明RTNLB13和RTNLB1-4定位并收缩管状ER膜。所有五个RTN优先积聚在ER小管上,并从ER池中排除。所有同工型均具有相同的跨膜拓扑结构,其中N和C末端面向细胞质和四个跨膜结构域。我们通过Forster共振能量转移和荧光寿命成像显微镜显示出几个RTN具有与自身以及彼此相互作用的能力,并且我们建议低聚是它们在ER膜中的原因。我们还显示,RTN在高曲率ER膜和ER小管收缩中都需要一个完整的网状结构同源域,但对于同型相互作用则不是必需的。

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