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首页> 外文期刊>Journal of cell biology >Parafusin, an exocytic-sensitive phosphoprotein, is the primary acceptor for the glucosylphosphotransferase in Paramecium tetraurelia and rat liver.
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Parafusin, an exocytic-sensitive phosphoprotein, is the primary acceptor for the glucosylphosphotransferase in Paramecium tetraurelia and rat liver.

机译:Parafusin是一种胞外敏感的磷蛋白,是四脲草履虫和大鼠肝脏中葡萄糖基磷酸转移酶的主要受体。

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摘要

Parafusin, the major protein in Paramecium tetraurelia to undergo dephosphorylation in response to secretory stimuli, appears to be the primary acceptor for the glucosylphosphotransferase in this species based on five independent criteria: identical molecular size of 63 kD; identical isoelectric points in the phosphorylated state of pH 5.8 and 6.2; identical behavior in reverse-phase chromatography; immunological cross-reactivity with an affinity-purified anti-parafusin antibody; the presence of a phosphorylated sugar after acid hydrolysis. It appears likely that the dephosphorylation observed with secretion reflects the removal of alpha Glc-1-P from parafusin's oligosaccharides and is consistent, therefore, with a regulatory role for this cytoplasmic glycosylation event. The glucosylphosphotransferase acceptor in rat liver is also immunoprecipitated by the anti-parafusin antibody and is very similar in physical characteristics to the paramecium protein. This conservation suggests a role for parafusin in mammalian exocytosis as well, at a step common to both the regulated and constitutive secretory pathways.
机译:根据五个独立的标准,在该物种中,脲丝菌素是四脲草履虫中的主要蛋白质,会响应于分泌刺激而进行去磷酸化,它是该葡萄糖基磷酸转移酶的主要受体。 pH 5.8和6.2的磷酸化状态下的等电点相同;在反相色谱中具有相同的行为;与亲和纯化的抗parafusin抗体的免疫学交叉反应;酸水解后磷酸糖的存在。似乎观察到的分泌物的去磷酸化反应反映了从岩藻融合蛋白的寡糖中除去αGlc-1-P,因此与该胞质糖基化事件的调节作用相一致。大鼠肝中的葡糖基磷酸转移酶受体也被抗parafusin抗体免疫沉淀,其物理特性与草履虫蛋白非常相似。这种保守性表明,在调节性和组成型分泌途径共同的步骤中,辅酶融合素也在哺乳动物胞吐作用中起作用。

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