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酵母v-SNARE蛋白Sec22p的循环利用涉及COP I蛋白以及内质网跨膜蛋白Ufe1p和Sec20p。

Recycling of the yeast v-SNARE Sec22p involves COPI-proteins and the ER transmembrane proteins Ufe1p and Sec20p.

作者信息

Ballensiefen W, Ossipov D, Schmitt H D

机构信息

Department of Molecular Genetics, Max-Planck-Institute for Biophysical Chemistry, D-37070 Göttingen, Germany.

出版信息

J Cell Sci. 1998 Jun;111 ( Pt 11):1507-20. doi: 10.1242/jcs.111.11.1507.

DOI:10.1242/jcs.111.11.1507
PMID:9580559
Abstract

Vesicle-specific SNAP receptors (v-SNAREs) are believed to cycle between consecutive membrane compartments. The v-SNARE Sec22(Sly2)p mediates the targeting of vesicles between endoplasmic reticulum (ER) and early Golgi of Saccharomyces cerevisiae. To analyze factors involved in targeting of Sec22(Sly2)p, an alpha-factor-tagged Sec22 protein (Sec22-alpha) was employed. Only on reaching the late Golgi, can alpha-factor be cleaved from this hybrid protein by Kex2p, a protease localized in this compartment. In wild-type cells Kex2p-cleavage is observed only when Sec22-alpha is greatly overproduced. Immunofluorescence microscopy and subcellular fractionation studies showed that Sec22-alpha is returned to the ER from the late Golgi (Kex2p) compartment. When Sec22-alpha is expressed in wild-type cells at levels comparable to the quantities of endogenous Sec22p, very little of this protein is cleaved by Kex2p. Efficient cleavage, however, occurs in mutants defective in the retrograde transport of different ER-resident proteins indicating that Sec22-alpha rapidly reaches the late Golgi of these cells. These mutants (sec20-1, sec21-1, sec27-1 and ufe1-1) reveal Golgi structures when stained for Sec22-alpha and do not show the ER-immunofluorescence observed in wild-type cells. These results show consistently that Sec22p recycles from the Golgi back to the ER and that this recycling involves retrograde COPI vesicles.

摘要

囊泡特异性可溶性 NSF 附着蛋白受体(v-SNAREs)被认为在连续的膜区室之间循环。v-SNARE Sec22(Sly2)p 介导酿酒酵母内质网(ER)和早期高尔基体之间囊泡的靶向运输。为了分析参与 Sec22(Sly2)p 靶向运输的因素,使用了一种α因子标记的 Sec22 蛋白(Sec22-α)。只有到达晚期高尔基体时,α因子才能被位于该区室的蛋白酶 Kex2p 从这种杂合蛋白上切割下来。在野生型细胞中,只有当 Sec22-α大量过量表达时才能观察到 Kex2p 切割。免疫荧光显微镜和亚细胞分级分离研究表明,Sec22-α从晚期高尔基体(Kex2p)区室返回内质网。当 Sec22-α在野生型细胞中以与内源性 Sec22p 数量相当的水平表达时,这种蛋白很少被 Kex2p 切割。然而,在不同内质网驻留蛋白逆行运输缺陷的突变体中发生了高效切割,这表明 Sec22-α迅速到达这些细胞的晚期高尔基体。这些突变体(sec20-1、sec21-1、sec27-1 和 ufe1-1)在用 Sec22-α染色时显示出高尔基体结构,并且没有显示出在野生型细胞中观察到的内质网免疫荧光。这些结果一致表明,Sec22p 从高尔基体循环回到内质网,并且这种循环涉及逆行 COPI 囊泡。

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Recycling of the yeast v-SNARE Sec22p involves COPI-proteins and the ER transmembrane proteins Ufe1p and Sec20p.酵母v-SNARE蛋白Sec22p的循环利用涉及COP I蛋白以及内质网跨膜蛋白Ufe1p和Sec20p。
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