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Defining the Topology of the N-Glycosylation Pathway in the Halophilic Archaeon Haloferax volcanii▿

机译:定义嗜盐古细菌Haloferax volcanii中N-糖基化途径的拓扑

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摘要

In Eukarya, N glycosylation involves the actions of enzymes working on both faces of the endoplasmic reticulum membrane. The steps of bacterial N glycosylation, in contrast, transpire essentially on the cytoplasmic side of the plasma membrane, with only transfer of the assembled glycan to the target protein occurring on the external surface of the cell. For Archaea, virtually nothing is known about the topology of enzymes involved in assembling those glycans that are subsequently N linked to target proteins on the external surface of the cell. To remedy this situation, subcellular localization and topology predictive algorithms, protease accessibility, and immunoblotting, together with cysteine modification following site-directed mutagenesis, were enlisted to define the topology of Haloferax volcanii proteins experimentally proven to participate in the N-glycosylation process. AglJ and AglD, involved in the earliest and latest stages, respectively, of assembly of the pentasaccharide decorating the H. volcanii S-layer glycoprotein, were shown to present their soluble N-terminal domain, likely containing the putative catalytic site of each enzyme, to the cytosol. The same holds true for Alg5-B, Dpm1-A, and Mpg1-D, proteins putatively involved in this posttranslational event. The results thus point to the assembly of the pentasaccharide linked to certain Asn residues of the H. volcanii S-layer glycoprotein as occurring within the cell.
机译:在Eukarya中,N糖基化涉及在内质网膜两面上作用的酶的作用。相反,细菌N糖基化的步骤基本上在质膜的细胞质侧蒸腾,而组装的聚糖向靶蛋白的转移仅发生在细胞的外表面。对于古细菌而言,关于组装这些聚糖的酶的拓扑结构几乎一无所知,这些聚糖随后被N连接到细胞外表面的靶蛋白上。为了纠正这种情况,我们邀请亚细胞定位和拓扑预测算法,蛋白酶可及性和免疫印迹,以及定点诱变后的半胱氨酸修饰,定义经实验证明参与了N-糖基化过程的Haloferax volcanii蛋白的拓扑。研究表明,分别参与装饰沃尔沃菌S层糖蛋白的五糖的最早和最新阶段的AglJ和AglD呈现出其可溶性N末端结构域,可能包含每种酶的推定催化位点,到细胞质。 Alg5-B,Dpm1-A和Mpg1-D(假定参与此翻译后事件的蛋白质)也是如此。结果因此指出与在细胞内发生的火山嗜血菌S层糖蛋白的某些Asn残基连接的五糖的组装。

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