首页> 外文OA文献 >Endoplasmic reticulum localization of Sec12p is achieved by two mechanisms: Rer1p-dependent retrieval that requires the transmembrane domain and Rer1p-independent retention that involves the cytoplasmic domain
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Endoplasmic reticulum localization of Sec12p is achieved by two mechanisms: Rer1p-dependent retrieval that requires the transmembrane domain and Rer1p-independent retention that involves the cytoplasmic domain

机译:Sec12p的内质网定位是通过两种机制实现的:需要跨膜结构域的Rer1p依赖检索和涉及胞质结构域的Rer1p独立保留

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摘要

Yeast Sec12p is a type II transmembrane protein in the ER, which is essential for the formation of transport vesicles. From biochemical and morphological lines of evidence, we have proposed that Sec12p is localized to the ER by two mechanisms: static retention in the ER and dynamic retrieval from the early Golgi compartment. We have also shown that Rer1p, a membrane protein in the Golgi, is required for correct localization of Sec12p. In the present study, we have performed a systematic analysis to determine the ER localization signals in Sec12p corresponding to these two mechanisms. Both the transmembrane domain (TMD) and the NH2-terminal cytoplasmic domain of Sec12p show the ability to localize the protein to the ER. The effect of the TMD is potent and sufficient by itself for the ER localization and is strongly dependent on Rer1p. On the other hand, the cytoplasmic domain shows a moderate ER-localization capability which is independent of Rer1p. The rate of mannosyl modification has been measured to distinguish between retention and retrieval. The cytoplasmic domain significantly delays the transport from the ER to the cis-Golgi. In contrast, the TMD shows only a subtle retardation in the transport from the ER to the cis-Golgi but strictly prevents the transport beyond there. From these observations, we conclude that the TMD mainly acts as the retrieval signal and the cytoplasmic domain contains the retention signal. This study not only supports the two-mechanisms hypothesis but also provides powerful tools to dissect the two.
机译:酵母Sec12p是ER中的一种II型跨膜蛋白,对转运小泡的形成至关重要。从生化和形态学的证据来看,我们提出了Sec12p通过两种机制定位于ER:静态保留在ER中和从早期高尔基体动态回收。我们还表明,Rer1p是高尔基体中的一种膜蛋白,对于Sec12p的正确定位是必需的。在本研究中,我们进行了系统的分析,以确定与这两种机制相对应的Sec12p中的ER定位信号。 Sec12p的跨膜结构域(TMD)和NH2末端胞质结构域均显示出将蛋白质定位于ER的能力。 TMD的作用对于ER定位本身是有效的且足够的,并且强烈依赖于Rer1p。另一方面,胞质域显示中等的ER定位能力,独立于Rer1p。测量了甘露糖基修饰的速率以区分保留和检索。胞质域显着延迟了从ER到顺式高尔基体的运输。相比之下,TMD在从ER到顺式高尔基体的运输中仅显示了微弱的延迟,但严格阻止了从那里的运输。从这些观察结果,我们得出结论,TMD主要充当检索信号,而胞质域包含保留信号。这项研究不仅支持两种机制的假设,而且提供了剖析两者的强大工具。

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