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The Physiopathological Role of the Exchangers Belonging to the SLC37 Family

机译:属于SLC37家族的交换子的生理病理作用

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The human SLC37 gene family includes four proteins SLC37A1-4, localized in the endoplasmic reticulum (ER) membrane. They have been grouped into the SLC37 family due to their sequence homology to the bacterial organophosphate/phosphate (Pi) antiporter. SLC37A1-3 are the less characterized isoforms. SLC37A1 and SLC37A2 are Pi-linked glucose-6-phosphate (G6P) antiporters, catalyzing both homologous (Pi/Pi) and heterologous (G6P/Pi) exchanges, whereas SLC37A3 transport properties remain to be clarified. Furthermore, SLC37A1 is highly homologous to the bacterial glycerol 3-phosphate permeases, so it is supposed to transport also glycerol-3-phosphate. The physiological role of SLC37A1-3 is yet to be further investigated. SLC37A1 seems to be required for lipid biosynthesis in cancer cell lines, SLC37A2 has been proposed as a vitamin D and a phospho-progesterone receptor target gene, while mutations in the SLC37A3 gene appear to be associated with congenital hyperinsulinism of infancy. SLC37A4, also known as glucose-6-phosphate translocase (G6PT), transports G6P from the cytoplasm into the ER lumen, working in complex with either glucose-6-phosphatase-α (G6Pase-α) or G6Pase-β to hydrolyze intraluminal G6P to Pi and glucose. G6PT and G6Pase-β are ubiquitously expressed, whereas G6Pase-α is specifically expressed in the liver, kidney and intestine. G6PT/G6Pase-α complex activity regulates fasting blood glucose levels, whereas G6PT/G6Pase-β is required for neutrophil functions. G6PT deficiency is responsible for glycogen storage disease type Ib (GSD-Ib), an autosomal recessive disorder associated with both defective metabolic and myeloid phenotypes. Several kinds of mutations have been identified in the SLC37A4 gene, affecting G6PT function. An increased autoimmunity risk for GSD-Ib patients has also been reported, moreover, SLC37A4 seems to be involved in autophagy.
机译:人SLC37基因家族包括位于内质网(ER)膜中的四种蛋白质SLC37A1-4。由于它们与细菌有机磷酸盐/磷酸盐(Pi)反向转运蛋白的序列同源性,它们已被归类为SLC37家族。 SLC37A1-3是特征较少的同工型。 SLC37A1和SLC37A2是Pi连接的6磷酸葡萄糖(G6P)反转运蛋白,催化同源(Pi / Pi)和异源(G6P / Pi)交换,而SLC37A3的转运特性尚待阐明。此外,SLC37A1与细菌的3-磷酸甘油通透酶高度同源,因此它也可以转运3-磷酸甘油。 SLC37A1-3的生理作用有待进一步研究。 SLC37A1似乎是癌细胞系中脂质生物合成所必需的,已经提出SLC37A2作为维生素D和磷酸孕酮受体靶基因,而SLC37A3基因中的突变似乎与婴儿的先天性高胰岛素血症有关。 SLC37A4,也称为葡萄糖6-磷酸转位酶(G6PT),将G6P从细胞质转运到ER内腔,与葡萄糖-6-磷酸酶-α(G6Pase-α)或G6Pase-β结合以水解腔内G6P去Pi和葡萄糖。 G6PT和G6Pase-β普遍存在,而G6Pase-α在肝,肾和肠中特异性表达。 G6PT /G6Pase-α复合物活性调节空腹血糖水平,而G6PT /G6Pase-β是中性粒细胞功能所必需的。 G6PT缺乏是糖原贮积性疾病Ib(GSD-Ib)的原因,糖原贮积性疾病是与代谢缺陷和骨髓表型均相关的常染色体隐性遗传疾病。已在SLC37A4基因中鉴定出几种突变,这些突变影响G6PT功能。还已经报道了GSD-1b患者的自身免疫风险增加,此外,SLC37A4似乎与自噬有关。

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