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克隆和功能表征 SLC4A10 产物的新型变异体和替代氨基及羧基末端的组织特异性表达。

Cloning and functional characterization of novel variants and tissue-specific expression of alternative amino and carboxyl termini of products of slc4a10.

机构信息

Department of Biophysics and Molecular Physiology, Key Laboratory of Molecular Biophysics of Ministry of Education, Huazhong University of Science & Technology School of Life Science & Technology, Wuhan, Hubei, China.

出版信息

PLoS One. 2013;8(2):e55974. doi: 10.1371/journal.pone.0055974. Epub 2013 Feb 7.

Abstract

Previous studies have shown that the electroneutral Na(+)/HCO(3) (-) cotransporter NBCn2 (SLC4A10) is predominantly expressed in the central nervous system (CNS). The physiological and pathological significances of NBCn2 have been well recognized. However, little is known about the tissue specificity of expression of different NBCn2 variants. Moreover, little is known about the expression of NBCn2 proteins in systems other than CNS. Here, we identified a set of novel Slc4a10 variants differing from the originally described ones by containing a distinct 5' untranslated region encoding a new extreme amino-terminus (Nt). Electrophysiology measurements showed that both NBCn2 variants with alternative Nt contain typical electroneutral Na(+)-coupled HCO(3) (-) transport activity in Xenopus oocytes. Luciferase reporter assay showed that Slc4a10 contains two alternative promoters responsible for expression of the two types of NBCn2 with distinct extreme Nt. Western blotting showed that NBCn2 proteins with the original Nt are primarily expressed in CNS, whereas those with the novel Nt are predominantly expressed in the kidney and to a lesser extent in the small intestine. Due to alternative splicing, the known NBCn2 variants contain two types of carboxyl-termini (CT) differing in the optional inclusion of a PDZ-binding motif. cDNA cloning showed that virtually all NBCn2 variants expressed in epithelial tissues contain, but the vast majority of those from the neural tissues lack the PDZ-binding motif. We conclude that alternative transcription and splicing of Slc4a10 products are regulated in a tissue-specific manner. Our findings provide critical insights that will greatly influence the study of the physiology of NBCn2.

摘要

先前的研究表明,电中性的 Na(+)/HCO(3) (-) 共转运蛋白 NBCn2 (SLC4A10) 主要在中枢神经系统 (CNS) 中表达。NBCn2 的生理和病理意义已得到充分认识。然而,关于不同 NBCn2 变体的组织特异性表达知之甚少。此外,关于 NBCn2 蛋白在 CNS 以外的系统中的表达知之甚少。在这里,我们鉴定了一组新的 Slc4a10 变体,它们与最初描述的变体不同,包含一个独特的 5'非翻译区,编码一个新的极端氨基末端 (Nt)。电生理学测量表明,具有替代 Nt 的两种 NBCn2 变体在非洲爪蟾卵母细胞中均含有典型的电中性 Na(+)-偶联 HCO(3) (-) 转运活性。荧光素酶报告基因测定表明,Slc4a10 包含两个替代启动子,负责表达具有不同极端 Nt 的两种类型的 NBCn2。Western blotting 表明,具有原始 Nt 的 NBCn2 蛋白主要在中枢神经系统中表达,而具有新 Nt 的 NBCn2 蛋白主要在肾脏中表达,在小肠中表达较少。由于选择性剪接,已知的 NBCn2 变体包含两种类型的羧基末端 (CT),在是否包含 PDZ 结合基序方面存在差异。cDNA 克隆表明,实际上在所有表达于上皮组织的 NBCn2 变体中都包含,但在绝大多数表达于神经组织的变体中缺乏 PDZ 结合基序。我们得出结论,Slc4a10 产物的转录和剪接的替代以组织特异性的方式进行调节。我们的发现提供了关键的见解,这将极大地影响 NBCn2 生理学的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97da/3567025/196a30f532df/pone.0055974.g001.jpg

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