首页> 美国卫生研究院文献>The Journal of Physiology >Effects of optional structural elements including two alternative amino termini and a new splicing cassette IV on the function of the sodium–bicarbonate cotransporter NBCn1 (SLC4A7)
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Effects of optional structural elements including two alternative amino termini and a new splicing cassette IV on the function of the sodium–bicarbonate cotransporter NBCn1 (SLC4A7)

机译:可选的结构元件包括两个替代的氨基末端和一个新的剪接盒IV对碳酸氢钠共转运蛋白NBCn1(SLC4A7)的功能的影响

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摘要

The SLC4A7 gene encodes the electroneutral sodium/HCO3 cotransporter NBCn1, which plays important physiological and pathophysiological roles in many cell types. Previous work identified six NBCn1 variants differing in the sequence of the extreme N terminus – MEAD in rat only, MERF in human only – as well as in the optional inclusion of cassettes I, II, and III. Earlier work also left open the question of whether optional structural elements (OSEs) affect surface abundance or intrinsic (per-molecule) transport activity. Here, we demonstrate for the first time that SLC4A7 from one species can express both MEAD- and MERF-NBCn1. We also identify a novel cassette IV of 20 aa, and extend by 10 the number of full-length NBCn1 variants. The alternative N termini and four cassettes could theoretically produce 32 major variants. Moreover, we identify a group of cDNAs predicted to encode just the cytosolic N-terminal domain (Nt) of NBCn1. A combination of electrophysiology and biotinylation shows that the OSEs can affect surface abundance and intrinsic HCO3 transport activity of NBCn1, as expressed in Xenopus oocytes. Specifically, MEAD tends to increase whereas novel cassette IV reduces surface abundance. Cassettes II, III and novel cassette IV all appear to increase the intrinsic activity of NBCn1.
机译:SLC4A7基因编码电中性钠/ HCO3共转运蛋白NBCn1,NBCn1在许多细胞类型中起重要的生理和病理生理作用。先前的工作确定了六个NBCn1变体,它们的极端N端序列不同-仅在大鼠中为MEAD,仅在人中为MERF-以及可选地包括盒式I,II和III。早期的工作还悬而未决,即可选结构元素(OSE)是否会影响表面丰度或固有的(每分子)运输活性。在这里,我们首次证明一种物种的SLC4A7可以表达MEAD-和MERF-NBCn1。我们还确定了20 aa的新型盒式磁带IV,并将全长NBCn1变体的数量扩展了10。备选的N末端和四个暗盒理论上可产生32个主要变体。此外,我们确定了一组预测仅编码NBCn1的胞质N末端结构域(Nt)的cDNA。电生理学和生物素化的结合表明,如非洲爪蟾卵母细胞中所表达的,OSE可以影响NBCn1的表面丰度和内在的HCO3 -转运活性。具体而言,MEAD趋于增加,而新型暗盒IV则降低了表面丰度。磁带II,III和新型磁带IV似乎都增加了NBCn1的固有活性。

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