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Functional Expression of Human NKCC1 from a Synthetic Cassette-Based cDNA: Introduction of Extracellular Epitope Tags and Removal of Cysteines

机译:从合成的基于盒的cDNA人类NKCC1的功能表达:细胞外表位标签的介绍和半胱氨酸的去除。

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The Na-K-Cl cotransporter (NKCC) couples the movement of Na+, K+, and Cl− ions across the plasma membrane of most animal cells and thus plays a central role in cellular homeostasis and human physiology. In order to study the structure, function, and regulation of NKCC1 we have engineered a synthetic cDNA encoding the transporter with 30 unique silent restriction sites throughout the open reading frame, and with N-terminal 3xFlag and YFP tags. We show that the novel cDNA is appropriately expressed in HEK-293 cells and that the YFP-tag does not alter the transport function of the protein. Utilizing the Cl− -sensing capability of YFP, we demonstrate a sensitive assay of Na-K-Cl cotransport activity that measures normal cotransport activity in a fully activated transporter. In addition we present three newly developed epitope tags for NKCC1 all of which can be detected from outside of the cell, one of which is very efficiently delivered to the plasma membrane. Finally, we have characterized cysteine mutants of NKCC1 and found that whereas many useful combinations of cysteine mutations are tolerated by the biosynthetic machinery, the fully “cys-less” NKCC1 is retained in the endoplasmic reticulum. Together these advances are expected to greatly assist future studies of NKCC1.
机译:Na-K-Cl共转运蛋白(NKCC)耦合了Na +,K +和Cl-离子在大多数动物细胞质膜上的运动,因此在细胞体内平衡和人体生理中起着重要作用。为了研究NKCC1的结构,功能和调控,我们设计了一个合成的cDNA,编码在整个开放阅读框中具有30个独特沉默限制位点以及N末端3xFlag和YFP标签的转运蛋白。我们显示,新的cDNA在HEK-293细胞中适当表达,并且YFP标签不会改变蛋白质的转运功能。利用YFP的Cl-感应能力,我们证明了Na-K-Cl共转运活性的灵敏测定法,可测量完全活化转运蛋白中的正常共转运活性。此外,我们介绍了NKCC1的三个新开发的抗原决定簇标签,所有这些抗原决定簇标签都可以从细胞外部检测到,其中一个非常有效地传递到质膜。最后,我们对NKCC1的半胱氨酸突变体进行了表征,发现虽然生物合成机制可耐受许多有用的半胱氨酸突变组合,但完全“无半胱氨酸”的NKCC1保留在内质网中。预计这些进展将大大有助于NKCC1的未来研究。

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