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N-连接聚糖的再糖基化对于钙连蛋白与T细胞受体(TCR)α蛋白而非TCRβ蛋白的组装至关重要。

Reglucosylation of N-linked glycans is critical for calnexin assembly with T cell receptor (TCR) alpha proteins but not TCRbeta proteins.

作者信息

Van Leeuwen J E, Kearse K P

机构信息

Experimental Immunology Branch, NCI, National Institutes of Health, Bethesda, Maryland 20892-1360, USA.

出版信息

J Biol Chem. 1997 Feb 14;272(7):4179-86. doi: 10.1074/jbc.272.7.4179.

Abstract

Association of calnexin with newly synthesized glycoproteins involves recognition of monoglucosylated glycans, generated in the endoplasmic reticulum via initial removal of two glucose (Glc) residues from immature glycan chains by glucosidase enzymes (Glc trimming), or addition of a single Glc residue to fully trimmed glycans by glucosyltransferase enzymes (reglucosylation). While it has been established that creation of monoglucosylated glycans is important for chaperone binding, it is unknown if most proteins require both deglucosylation and reglucosylation for calnexin assembly or if initial Glc trimming is sufficient. Here, we studied the deglucosylation and reglucosylation of two related glycoproteins, the alpha and beta subunits of the T cell receptor (TCR) complex, and their assembly with calnexin in BW thymoma cells. Our data demonstrate that TCRalpha/beta glycoproteins undergo multiple cycles of Glc removal and addition within the endoplasmic reticulum and that numerous reglucosylated proteins assemble with calnexin, including TCRalpha/beta glycoproteins. Importantly, the current study shows that TCRbeta proteins, but not TCRalpha proteins, effectively associate with calnexin under conditions of functional Glc trimming but impaired reglucosylation. These data demonstrate that reglucosylated proteins associate with lectin-like chaperones in vivo and provide evidence that reglucosylation is of differential importance for the association of individual, indeed similar, glycoproteins with calnexin.

摘要

钙连接蛋白与新合成的糖蛋白的结合涉及对单葡糖基化聚糖的识别,这些聚糖在内质网中通过葡糖苷酶从未成熟聚糖链上最初去除两个葡萄糖(Glc)残基(Glc修剪)产生,或者通过葡糖基转移酶将单个Glc残基添加到完全修剪的聚糖上(再葡糖基化)。虽然已经确定单葡糖基化聚糖的产生对于伴侣蛋白结合很重要,但尚不清楚大多数蛋白质是否需要去葡糖基化和再葡糖基化才能与钙连接蛋白组装,或者最初的Glc修剪是否足够。在这里,我们研究了两种相关糖蛋白,即T细胞受体(TCR)复合物的α和β亚基的去葡糖基化和再葡糖基化,以及它们在BW胸腺瘤细胞中与钙连接蛋白的组装。我们的数据表明,TCRα/β糖蛋白在内质网中经历多个Glc去除和添加循环,并且许多再葡糖基化的蛋白质与钙连接蛋白组装,包括TCRα/β糖蛋白。重要的是,当前研究表明,在功能性Glc修剪但再葡糖基化受损的条件下,TCRβ蛋白而非TCRα蛋白有效地与钙连接蛋白结合。这些数据表明再葡糖基化的蛋白质在体内与凝集素样伴侣蛋白结合,并提供证据表明再葡糖基化对于个体(实际上是相似的)糖蛋白与钙连接蛋白的结合具有不同的重要性。

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