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The SLC26 Gene Family of Anion Transporters and Channels

机译:阴离子转运蛋白和通道的SLC26基因家族

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摘要

The phylogenetically ancient SLC26 gene family encodes multifunctional anion exchangers and anion channels transporting a broad range of substrates, including Cl, HCO3, sulfate, oxalate, I, and formate. SLC26 polypeptides are characterized by N-terminal cytoplasmic domains, 10–14 hydrophobic transmembrane spans, and C-terminal cytoplasmic STAS domains, and appear to be homo-oligomeric. SLC26-related SulP proteins of marine bacteria likely transport HCO3 as part of oceanic carbon fixation. SulP genes present in antibiotic operons may provide sulfate for antibiotic biosynthetic pathways. SLC26-related Sultr proteins transport sulfate in unicellular eukaryotes and in plants. Mutations in three human SLC26 genes are associated with congenital or early onset Mendelian diseases: chondrodysplasias for SLC26A2, chloride diarrhea for SLC26A3, and deafness with enlargement of the vestibular aqueduct for SLC26A4. Additional disease phenotypes evident only in mouse knockout models include oxalate urolithiasis for Slc26a6 and Slc26a1, non-syndromic deafness for Slc26a5, gastric hypochlorhydria for Slc26a7 and Slc26a9, distal renal tubular acidosis for Slc26a7, and male infertility for Slc26a8. STAS domains are required for cell surface expression of SLC26 proteins, and contribute to regulation of the cystic fibrosis transmembrane regulator in complex, cell- and tissue-specific ways. The protein interactomes of SLC26 polypeptides are under active vestigation.
机译:系统发育上古老的SLC26基因家族编码多功能阴离子交换剂和阴离子通道,可运输多种底物,包括Cl -,HCO3 -,硫酸盐,草酸盐,I - ,然后成为队友。 SLC26多肽的特征在于N端胞质结构域,10-14个疏水跨膜跨度和C端胞质STAS结构域,并且似乎是同聚的。海洋细菌与SLC26相关的SulP蛋白可能作为海洋碳固定的一部分转运HCO3 -。抗生素操纵子中存在的SulP基因可能为抗生素的生物合成途径提供硫酸盐。 SLC26相关的Sultr蛋白在单细胞真核生物和植物中转运硫酸盐。三种人类SLC26基因的突变与先天性或孟德尔性疾病有关:SLC26A2的软骨发育不良,SLC26A3的氯化物腹泻,以及SLC26A4的前庭导水管增大引起的耳聋。仅在小鼠基因敲除模型中明显的其他疾病表型包括Slc26a6和Slc26a1的草酸盐尿石症,Slc26a5的非综合征性耳聋,Slc26a7和Slc26a9的胃酸过少,Slc26a7的远端肾小管酸中毒以及Slc26a8的男性不育。 STAS结构域是SLC26蛋白在细胞表面表达所必需的,并且有助于以复杂,细胞和组织特异性的方式调节囊性纤维化跨膜调节剂。 SLC26多肽的蛋白质相互作用组正在积极研究中。

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