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Endomannosidase undergoes phosphorylation in the Golgi apparatus

机译:甘露糖苷内切酶在高尔基体中发生磷酸化

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摘要

Glucose residues from N-linked oligosaccharides are removed by glucosidases I and II in the endoplasmic reticulum (ER) or by the alternate endomannosidase pathway in the Golgi apparatus. Our morphological analysis demonstrates that recombinant rat endomannosidase exhibited a cis- and medial-Golgi localization alike the endogenous enzyme and its ER to Golgi transport is COP II mediated. Recombinant endomannosidase undergoes a posttranslational modification, which is not related to N-or O-glycosylation. A shift in molecular mass of recombinant endomannosidase was observed upon phosphatase digestion but not for ER-retained CHO cell endomannosidase. Furthermore, immunoprecipitation of 35S- and 33P-labeled endomannosidase expressed in CHO-K1 cells suggests that recombinant endomannosidase undergoes phosphorylation. Substitution of the single cytoplasmic threonine residue of rat endomannosidase by either an alanine or valine residue resulted in the same posttranslational modification alike the wild-type enzyme. The subcellular localization and the in vivo activity of the mutant endomannosidase were not affected. Thus, endomannosidase phosphorylation is occurring in luminal sequences. Modification was prevented when endomannosidase was synthesized using reticulocyte lysates in the presence of canine microsomes. Treatment of cells with brefeldin A blocked the posttranslational modification of endomannosidase, suggesting that phosphorylation is occurring in the Golgi apparatus, the residence of endomannosidase.
机译:N-连接寡糖中的葡萄糖残基通过内质网(ER)中的葡糖苷酶I和II或高尔基体中的替代甘露糖苷酶途径去除。我们的形态学分析表明,重组大鼠内切甘露糖苷酶像内源酶一样表现出顺式和内侧高尔基体定位,并且其ER向高尔基体的转运是由COP II介导的。重组内甘露糖苷酶经历翻译后修饰,与N-或O-糖基化无关。磷酸酶消化后观察到重组内切甘露糖苷酶的分子量变化,但对于ER保留的CHO细胞内切甘露糖苷酶没有观察到。此外,CHO-K1细胞中表达的 35 S-和 33 P标记的甘露糖苷酶的免疫沉淀表明重组甘露糖苷酶发生磷酸化。大鼠内甘露糖苷酶的单个胞质苏氨酸残基被丙氨酸或缬氨酸残基替代,导致了与野生型酶相同的翻译后修饰。突变体甘露糖苷酶的亚细胞定位和体内活性不受影响。因此,甘露糖苷酶磷酸化发生在腔序列中。当在犬微粒体存在下使用网状细胞裂解物合成甘露糖苷酶时,可防止修饰。用布雷菲德菌素A处理细胞会阻止内切甘露糖苷酶的翻译后修饰,表明磷酸化发生在高尔基体中,即内切甘露糖苷酶的驻留。

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  • 来源
    《Glycobiology》 |2010年第1期|p.55-61|共7页
  • 作者

    Martin Ziak;

  • 作者单位

    University of Zurich, @%@To whom correspondence should be addressed: Tel: @%@;

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