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Effects of Nt-truncation and coexpression of isolated Nt domains on the membrane trafficking of electroneutral Na+/HCO3– cotransporters

机译:Nt截短和分离Nt域的共表达对电中性Na + / HCO 3 共转运蛋白的膜运输的影响

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The SLC4 genes are all capable of producing multiple variants by alternative splicing or using alternative promoters. The physiological consequences of such diversity are of great interest to investigators. Here, we identified two novel variants of the electroneutral Na+/ cotransporter NBCn1, one full-length starting with “MIPL” and the other Nt-truncated starting with “MDEL”. Moreover, we identified a new promoter of Slc4a10 encoding NBCn2 and a novel type of Nt-truncated NBCn2 starting with “MHAN”. When heterologously expressed, the new NBCn1 variants were well localized to the plasma membrane and exhibited characteristic NBCn1 activity. However, MHAN-NBCn2 was poorly localized on the plasma membrane. By deletion mutations, we identified the Nt regions important for the surface localization of NBCn2. Interestingly, coexpressing the full-length NBCn2 greatly enhances the surface abundance of the Nt-truncated NBCn2. Co-immunoprecipitation and bimolecular fluorescence complementation studies showed that the full-length and Nt-truncated NBCn2 interact with each other to form heterodimers in neuro-2A cells. Finally, we showed that the isolated Nt domain interacts with and enhances the surface abundance of the Nt-truncated NBCn2. The present study expands our knowledge of the NBCn1 and NBCn2 transcriptome, and provides insights into how the Nt domain could affect transporter function by regulating its membrane trafficking.
机译:SLC4基因都能够通过选择性剪接或使用选择性启动子产生多种变异。这种多样性的生理后果引起了研究者的极大兴趣。在这里,我们确定了电中性Na + /共转运蛋白NBCn1的两个新颖变体,一个全长以“ MIPL”开头,而另一个被截短的Nt以“ MDEL”开头。此外,我们确定了一个新的编码NBCn2的Slc4a10启动子和一种以“ MHAN”开头的新型Nt截短的NBCn2。当异源表达时,新的NBCn1变体很好地定位在质膜上,并表现出特征性的NBCn1活性。但是,MHAN-NBCn2在质膜上的定位很差。通过删除突变,我们确定了Nt区对于NBCn2的表面定位很重要。有趣的是,全长NBCn2的共表达大大提高了Nt截短的NBCn2的表面丰度。免疫共沉淀和双分子荧光互补研究表明,全长和Nt截短的NBCn2彼此相互作用,在神经2A细胞中形成异二聚体。最后,我们显示了分离的Nt域与Nt截短的NBCn2相互作用并增强了其表面丰度。本研究扩展了我们对NBCn1和NBCn2转录组的了解,并提供了有关Nt域如何通过调节其膜运输影响转运蛋白功能的见解。

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