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The putative tumor suppressors EXT1 and EXT2 form a stable complex that accumulates in the Golgi apparatus and catalyzes the synthesis of heparan sulfate

机译:推定的肿瘤抑制因子EXT1和EXT2形成稳定的复合物该复合物积聚在高尔基体中并催化硫酸乙酰肝素的合成

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摘要

Hereditary multiple exostoses, a dominantly inherited genetic disorder characterized by multiple cartilaginous tumors, is caused by mutations in members of the EXT gene family, EXT1 or EXT2. The proteins encoded by these genes, EXT1 and EXT2, are endoplasmic reticulum-localized type II transmembrane glycoproteins that possess or are tightly associated with glycosyltransferase activities involved in the polymerization of heparan sulfate. Here, by testing a cell line with a specific defect in EXT1 in in vivo and in vitro assays, we show that EXT2 does not harbor significant glycosyltransferase activity in the absence of EXT1. Instead, it appears that EXT1 and EXT2 form a hetero-oligomeric complex in vivo that leads to the accumulation of both proteins in the Golgi apparatus. Remarkably, the Golgi-localized EXT1/EXT2 complex possesses substantially higher glycosyltransferase activity than EXT1 or EXT2 alone, which suggests that the complex represents the biologically relevant form of the enzyme(s). These findings provide a rationale to explain how inherited mutations in either of the two EXT genes can cause loss of activity, resulting in hereditary multiple exostoses.
机译:遗传性多个外生糖是一种以多种软骨肿瘤为特征的显性遗传遗传疾病,是由EXT基因家族EXT1或EXT2成员的突变引起的。这些基因EXT1和EXT2编码的蛋白质是内质网定位的II型跨膜糖蛋白,具有与硫酸乙酰肝素聚合相关的糖基转移酶活性或与之紧密相关。在这里,通过在体内和体外试验中测试EXT1有特定缺陷的细胞系,我们表明在没有EXT1的情况下EXT2没有明显的糖基转移酶活性。相反,似乎EXT1和EXT2在体内形成了异源寡聚复合物,导致两种蛋白质在高尔基体中积累。值得注意的是,高尔基体定位的EXT1 / EXT2复合物比单独的EXT1或EXT2具有更高的糖基转移酶活性,这表明该复合物代表了酶的生物学相关形式。这些发现为解释两个EXT基因之一的遗传突变如何导致活性丧失,导致遗传性多个外生糖的原因提供了理论依据。

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