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The solute carrier 26 family of proteins in epithelial ion transport.

机译:溶质载体26家族蛋白在上皮离子转运中。

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Transepithelial Cl(-) and HCO(3)(-) transport is critically important for the function of all epithelia and, when altered or ablated, leads to a number of diseases, including cystic fibrosis, congenital chloride diarrhea, deafness, and hypotension (78, 111, 119, 126). HCO(3)(-) is the biological buffer that maintains acid-base balance, thereby preventing metabolic and respiratory acidosis (48). HCO(3)(-) also buffers the pH of the mucosal layers that line all epithelia, protecting them from injury (2). Being a chaotropic ion, HCO(3)(-) is essential for solubilization of ions and macromolecules such as mucins and digestive enzymes in secreted fluids. Most epithelia have a Cl(-)/HCO(3) exchange activity in the luminal membrane. The molecular nature of this activity remained a mystery for many years until the discovery of SLC26A3 and the realization that it is a member of a new family of Cl(-) and HCO(3)(-) transporters, the SLC26 family (73, 78). This review will highlight structural features, the functional diversity, and several regulatory aspects of the SLC26 transporters.
机译:经上皮的Cl(-)和HCO(3)(-)转运对于所有上皮的功能至关重要,并且当改变或消融时,会导致多种疾病,包括囊性纤维化,先天性氯化物腹泻,耳聋和低血压( 78、111、119、126)。 HCO(3)(-)是维持酸碱平衡,从而防止代谢和呼吸性酸中毒的生物缓冲液(48)。 HCO(3)(-)还可以缓冲覆盖所有上皮的粘膜层的pH,从而保护它们免受损伤(2)。作为离液离子,HCO(3)(-)对于离子和大分子(如粘蛋白和消化液)在分泌液中的溶解至关重要。大多数上皮细胞在腔膜中具有Cl(-)/ HCO(3)交换活性。直到发现SLC26A3并意识到它是Cl(-)和HCO(3)(-)转运蛋白新家族SLC26家族的一员,这一活性的分子性质一直是一个谜。 78)。这篇综述将重点介绍SLC26转运蛋白的结构特征,功能多样性和一些法规方面。

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