Dean N, Pelham H R
Medical Research Council Laboratory of Molecular Biology, Cambridge, UK.
J Cell Biol. 1990 Aug;111(2):369-77. doi: 10.1083/jcb.111.2.369.
In the yeast Saccharomyces cerevisiae, the carboxyl terminal sequence His-Asp-Glu-Leu (HDEL) has been shown to function as an ER retention sequence (Pelham, H. R. B., K. G. Hardwick, and M. J. Lewis. 1988. EMBO (Eur. Mol. Biol. Organ.) J. 7:1757-1762). To examine the mechanism of retention of soluble ER proteins in yeast, we have analyzed the expression of a preproalpha factor fusion protein, tagged at the carboxyl terminus with the HDEL sequence. We demonstrate that this fusion protein, expressed in vivo, accumulates intracellularly as a precursor containing both ER and Golgi-specific oligosaccharide modifications. The Golgi-specific carbohydrate modification, which occurs in a SEC18-dependent manner, consists of alpha 1-6 mannose linkages, with no detectable alpha 1-3 mannose additions, indicating that the transit of the HDEL-tagged fusion protein is confined to an early Golgi compartment. Results obtained from the fractionation of subcellular organelles from yeast expressing HDEL-tagged fusion proteins suggest that the Golgi-modified species are present in the ER. Overexpression of HDEL-tagged preproalpha factor results in the secretion of an endogenous HDEL-containing protein, demonstrating that the HDEL recognition system can be saturated. These results support the model in which the retention of these proteins in the ER is dependent on their receptor-mediated recycling from the Golgi complex back to the ER.
在酿酒酵母中,羧基末端序列His-Asp-Glu-Leu(HDEL)已被证明可作为内质网滞留序列(佩勒姆,H.R.B.,K.G.哈德威克,和M.J.刘易斯。1988年。《欧洲分子生物学组织杂志》7:1757 - 1762)。为了研究酵母中可溶性内质网蛋白的滞留机制,我们分析了一种前原α因子融合蛋白的表达,该融合蛋白在羧基末端带有HDEL序列。我们证明,这种在体内表达的融合蛋白作为一种包含内质网和高尔基体特异性寡糖修饰的前体在细胞内积累。高尔基体特异性碳水化合物修饰以SEC18依赖的方式发生,由α1 - 6甘露糖连接组成,没有可检测到的α1 - 3甘露糖添加,这表明带有HDEL标签的融合蛋白的转运局限于早期高尔基体区室。从表达带有HDEL标签融合蛋白的酵母亚细胞器分级分离获得的结果表明,高尔基体修饰形式存在于内质网中。过量表达带有HDEL标签的前原α因子导致一种内源性含HDEL蛋白的分泌,表明HDEL识别系统可以饱和。这些结果支持了这样一种模型,即这些蛋白在内质网中的滞留取决于它们通过受体介导从高尔基体复合体循环回到内质网。