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酿酒酵母线性DNA质粒pGKL1上编码的杀伤毒素的分泌。

Secretion of killer toxin encoded on the linear DNA plasmid pGKL1 from Saccharomyces cerevisiae.

作者信息

Tokunaga M, Kawamura A, Kitada K, Hishinuma F

机构信息

Laboratory of Molecular Genetics, Mitsubishi Kasei Institute of Life Sciences, Tokyo, Japan.

出版信息

J Biol Chem. 1990 Oct 5;265(28):17274-80.

PMID:2211624
Abstract

By the kar1-mediated cytoduction, linear double-stranded DNA plasmids pGKL1 and pGKL2, encoding killer toxin complex, have been successfully transferred to the recipient strains with about 30% frequency. The killer toxin was found to be secreted through the normal yeast secretory pathway by introducing pGKL plasmids into the several Saccharomyces cerevisiae sec mutants and examining the secretion of killer toxin. S. cerevisiae cells, harboring newly isolated deletion plasmid pGKL1D, expressed only the 28K protein among three killer subunits, and secreted the 28K subunit at a level of zero to 20% efficiency of the cells containing intact pGKL1 plasmid. These data indicated that subunit interaction (cosecretion) of killer proteins is required for the efficient secretion of 28K subunit. The 28K precursor protein was found to translocate across the canine pancreatic endoplasmic reticulum membrane under the direction of its own signal peptide in vitro without any other subunits. From kex2 mutant cells harboring pGKL1 plasmid, the 97K subunit, and its precursor 128K protein were not secreted, however, the 28K subunit was secreted in the same amount as that secreted from KEX2 cells. These lines of evidence suggest that the final assembly of killer toxin complex after KEX2 site of Golgi apparatus is not essential for the secretion of 28K subunit, and therefore, that putative interaction between 128K protein and 28K subunit for the transport between endoplasmic reticulum and Golgi apparatus may be required for the efficient secretion of 28K subunit.

摘要

通过kar1介导的细胞融合,编码杀伤毒素复合物的线性双链DNA质粒pGKL1和pGKL2已成功地以约30%的频率转移到受体菌株中。通过将pGKL质粒导入几种酿酒酵母sec突变体并检测杀伤毒素的分泌情况,发现杀伤毒素是通过正常的酵母分泌途径分泌的。携带新分离的缺失质粒pGKL1D的酿酒酵母细胞在三个杀伤亚基中仅表达28K蛋白,并且以含有完整pGKL1质粒的细胞0%至20%的效率水平分泌28K亚基。这些数据表明,杀伤蛋白的亚基相互作用(共分泌)是28K亚基有效分泌所必需的。发现28K前体蛋白在体外能在其自身信号肽的引导下穿过犬胰腺内质网膜,无需任何其他亚基。从携带pGKL1质粒的kex2突变细胞中,97K亚基及其前体128K蛋白未被分泌,然而,28K亚基的分泌量与从KEX2细胞分泌的量相同。这些证据表明,高尔基体KEX2位点之后杀伤毒素复合物的最终组装对于28K亚基的分泌不是必需的,因此,内质网和高尔基体之间运输所需的128K蛋白和28K亚基之间的假定相互作用可能是28K亚基有效分泌所必需的。

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