首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Preferential transfer of the complete glycan is determined by the oligosaccharyltransferase complex and not by the catalytic subunit
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Preferential transfer of the complete glycan is determined by the oligosaccharyltransferase complex and not by the catalytic subunit

机译:完整聚糖的优先转移取决于寡糖基转移酶复合物,而不取决于催化亚基

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摘要

Most eukaryotic cells show a strong preference for the transfer in vivo and in vitro of the largest dolichol-P-P-linked glycan (Glc_3Man_9GlcNAc_2) to protein chains over that of biosynthetic intermediates that lack the full complement of glucose units. The oligosaccharyltransferase (OST) is a multimeric complex containing eight different proteins, one of which (Stt3p) is the catalytic subunit. Trypanosomatid protozoa lack an OST complex and express only this last protein. Contrary to the OST complex from most eukaryotic cells, the Stt3p subunit of these parasites transfers in cell-free assays glycans with Man_(7-9)GlcNAc_2 and Glc_(1-3)Man_9GlcNAc_2 compositions at the same rate. We have replaced Saccharomyces cerevisiae Stt3p by the Trypanosoma cruzi homologue and found that the complex that is formed preferentially transfers the complete glycan both in vivo and in vitro. Thus, preference for Glc_3Man_9GlcNAc_2 is a feature that is determined by the complex and not by the catalytic subunit.
机译:大多数真核细胞显示出最大的偏好,即与缺乏葡萄糖单位完全互补的生物合成中间体相比,最大的由多环醇-P-P连接的聚糖(Glc_3Man_9GlcNAc_2)在体内和体外向蛋白质链的转移。寡糖基转移酶(OST)是包含8种不同蛋白质的多聚体复合物,其中一种(Stt3p)是催化亚基。锥虫原生动物缺乏OST复合物,仅表达最后一种蛋白质。与大多数真核细胞的OST复合物相反,这些寄生虫的Stt3p亚基在无细胞测定中以相同的速率以Man_(7-9)GlcNAc_2和Glc_(1-3)Man_9GlcNAc_2组成的聚糖转移。我们用克鲁斯锥虫替代了酿酒酵母Stt3p,发现形成的复合物在体内和体外均优先转移完整的聚糖。因此,对Glc_3Man_9GlcNAc_2的偏爱是一种由复合物而不是催化亚基决定的特征。

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