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首页> 外文期刊>The Journal of biological chemistry >Multimerization of Glycosylphosphatidylinositol-anchored High Density Lipoprotein-binding Protein 1 (GPIHBP1) and Familial Chylomicronemia from a Serine-to-Cysteine Substitution in GPIHBP1 Ly6 Domain
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Multimerization of Glycosylphosphatidylinositol-anchored High Density Lipoprotein-binding Protein 1 (GPIHBP1) and Familial Chylomicronemia from a Serine-to-Cysteine Substitution in GPIHBP1 Ly6 Domain

机译:从GPIHBP1 Ly6结构域内的丝氨酸与半胱氨酸取代,糖基磷脂酰肌醇锚定的高密度脂蛋白结合蛋白1(GPIHBP1)和家族性乳瘤血症的多聚化

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GPIHBP1, a glycosylphosphatidylinositol-anchored glycoprotein of microvascular endothelial cells, binds lipoprotein lipase (LPL) within the interstitial spaces and transports it across endothelial cells to the capillary lumen. The ability of GPIHBP1 to bind LPL depends on the Ly6 domain, a three-fingered structure containing 10 cysteines and a conserved pattern of disulfide bond formation. Here, we report a patient with severe hypertriglyceridemia who was homozygous for a GPIHBP1 point mutation that converted a serine in the GPIHBP1 Ly6 domain (Ser-107) to a cysteine. Two hypertriglyceridemic siblings were homozygous for the same mutation. All three homozygotes had very low levels of LPL in the preheparin plasma. We suspected that the extra cysteine in GPIHBP1-S107C might prevent the trafficking of the protein to the cell surface, but this was not the case. However, nearly all of the GPIHBP1-S107C on the cell surface was in the form of disulfide-linked dimers and multimers, whereas wild-type GPIHBP1 was predominantly monomeric. An insect cell GPIHBP1 expression system confirmed the propensity of GPIHBP1-S107C to form disulfide-linked dimers and to form multimers. Functional studies showed that only GPIHBP1 monomers bind LPL. In keeping with that finding, there was no binding of LPL to GPIHBP1-S107C in either cell-based or cell-free binding assays. We conclude that an extra cysteine in the GPIHBP1 Ly6 motif results in multimerization of GPIHBP1, defective LPL binding, and severe hypertriglyceridemia.
机译:GPIHBP1是微血管内皮细胞的糖基磷脂酰肌醇锚定糖蛋白,在间质空间内结合脂蛋白脂肪酶(LPL),并将其穿过内皮细胞到毛细管内腔。 GPIHBP1结合LPL的能力取决于Ly6结构域,含有10个半胱氨酸的三指结构和守护的二硫键形成。在这里,我们报告具有严重的高甘油肽血症的患者,该患者是GPIHBP1点突变的纯合,将GPIHBP1 LY6结构域(SER-107)中的丝氨酸转化为半胱氨酸。两个高素质的高钙化酶兄弟姐妹对同一突变纯合。所有三个纯合子在前肝素等离子体中具有非常低的LPL水平。我们怀疑GPIHBP1-S107C中的额外半胱氨酸可能会阻止将蛋白质的贩运到细胞表面上,但情况并非如此。然而,几乎所有GPIHBP1-S107C在细胞表面上是二硫化物连接二聚体和多聚体的形式,而野生型GPIHBP1主要是单体。昆虫细胞GPIHBP1表达系统证实了GPIHBP1-S107C的倾向形成二硫化物连接二聚体并形成多聚体。功能研究表明,只有GPIHBP1单体结合LPL。在保持该发现时,在基于细胞的或无细胞结合测定中,LPL在GPIHBP1-S107C中没有结合。我们得出结论,GPIHBP1 LY6主题中的额外半胱氨酸导致GPIHBP1的多元化,缺陷的LPL结合和严重的高甘油脂血症。

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