首页> 美国卫生研究院文献>The EMBO Journal >Kex2-dependent invertase secretion as a tool to study the targeting of transmembrane proteins which are involved in ER--Golgi transport in yeast.
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Kex2-dependent invertase secretion as a tool to study the targeting of transmembrane proteins which are involved in ER--Golgi transport in yeast.

机译:依赖Kex2的转化酶分泌作为研究靶向跨膜蛋白的工具这些跨膜蛋白与酵母中ER-高尔基体运输有关。

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摘要

Mutants were isolated that are defective in the retention of a transmembrane protein in the early secretory compartments in yeast. A series of hybrid proteins was tested for their use in the selection of such mutants. Each of these hybrid proteins consisted of a type II transmembrane protein (Nin/Cout) and invertase (Suc2) as a reporter separated by a peptide linker containing a cleavage site for the Golgi protease Kex2. The integral membrane proteins which were used--Sec12p, Sec22/Sly2p or Bet1/Sly12p--are all known to be required for ER-->Golgi transport in yeast. Invertase was readily cleaved from the fusions containing Sec22/Sly2p or Bet1/Sly12p as the membrane anchoring part. In contrast, Sec12--invertase expressing transformants required mutations in either of two different genes for Kex2-dependent invertase secretion. The mutant showing the stronger retention defect (rer1) was used to clone the corresponding gene. RER1 represents the first reading frame left of the centromere of chromosome III. Cells carrying a disruption of the RER1 gene are viable and show the same mislocalizing phenotype as the original mutants. The Rer1 protein, as deduced from the nucleotide sequence, contains four transmembrane domains. It has been suggested before that Sec12p cycles between the ER and the cis-Golgi compartment. Some results obtained by using Sec12-invertase and the rer1 mutants resemble observations on the retention of Golgi-resident glycosyltransferases and viral proteins in mammalian cells. For instance, retention of Sec12-invertase is non-saturable and the membrane-spanning domain of Sec12p seems to constitute an important targeting signal.
机译:分离出在酵母的早期分泌区室中跨膜蛋白的保留有缺陷的突变体。测试了一系列杂合蛋白在选择此类突变体中的用途。这些杂合蛋白中的每一个均由II型跨膜蛋白(Nin / Cout)和转化酶(Suc2)组成,其中报告子被包含高尔基蛋白酶Kex2裂解位点的肽接头隔开。众所周知,所用的完整膜蛋白-Sec12p,Sec22 / Sly2p或Bet1 / Sly12p-是酵母中ER->高尔基体运输所必需的。容易从含有Sec22 / Sly2p或Bet1 / Sly12p作为膜锚定部分的融合物中切割出转化酶。相比之下,表达Sec12的转化酶的转化子需要两个不同基因中的一个突变才能依赖Kex2的转化酶分泌。具有较强保留缺陷的突变体(rer1)用于克隆相应的基因。 RER1代表染色体III着丝粒左侧的第一个阅读框。携带RER1基因破坏的细胞是可行的,并且显示出与原始突变体相同的错位表型。根据核苷酸序列推导,Rer1蛋白包含四个跨膜结构域。之前曾有人提出,Sec12p在内质网和顺式高尔基体之间循环。通过使用Sec12-转化酶和rer1突变体获得的一些结果类似于在哺乳动物细胞中保留高尔基体糖基转移酶和病毒蛋白的观察结果。例如,Sec12-转化酶的保留是不饱和的,Sec12p的跨膜结构域似乎构成了重要的靶向信号。

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