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囊性纤维化跨膜传导调节因子与碳酸氢盐回收转运体人钠-碳酸氢盐共转运体亚型3相互作用并调节其活性。

The cystic fibrosis transmembrane conductance regulator interacts with and regulates the activity of the HCO3- salvage transporter human Na+-HCO3- cotransport isoform 3.

作者信息

Park Meeyoung, Ko Shigeru B H, Choi Joo Young, Muallem Gaia, Thomas Philip J, Pushkin Alexander, Lee Myeong-Sok, Kim Joo Young, Lee Min Goo, Muallem Shmuel, Kurtz Ira

机构信息

Department of Physiology, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.

出版信息

J Biol Chem. 2002 Dec 27;277(52):50503-9. doi: 10.1074/jbc.M201862200. Epub 2002 Oct 25.

Abstract

Cystic fibrosis transmembrane conductance regulator (CFTR) regulates both HCO(3)(-) secretion and HCO(3)(-) salvage in secretory epithelia. At least two luminal transporters mediate HCO(3)(-) salvage, the Na(+)/H(+) exchanger (NHE3) and the Na(+)-HCO(3)(-) cotransport (NBC3). In a previous work, we show that CFTR interacts with NHE3 to regulate its activity (Ahn, W., Kim, K. W., Lee, J. A., Kim, J. Y., Choi, J. Y., Moe, O. M., Milgram, S. L., Muallem, S., and Lee, M. G. (2001) J. Biol. Chem. 276, 17236-17243). In this work, we report that transient or stable expression of human NBC3 (hNBC3) in HEK cells resulted in a Na(+)-dependent, DIDS (4,4'-diisothiocyanostilbene-2,2'-disulfonic acid)- and 5-ethylisopropylamiloride-insensitive HCO(3)(-) transport. Stimulation of CFTR with forskolin markedly inhibited NBC3 activity. This inhibition was prevented by the inhibition of protein kinase A. NBC3 and CFTR could be reciprocally coimmunoprecipitated from transfected HEK cells and from the native pancreas and submandibular and parotid glands. Precipitation of NBC3 or CFTR from transfected HEK293 cells and from the pancreas and submandibular gland also coimmunoprecipitated EBP50. Glutathione S-transferase-EBP50 pulled down CFTR and hNBC3 from cell lysates when expressed individually and as a complex when expressed together. Notably, the deletion of the C-terminal PDZ binding motifs of CFTR or hNBC3 prevented coimmunoprecipitation of the proteins and inhibition of hNBC3 activity by CFTR. We conclude that CFTR and NBC3 reside in the same HCO(3)(-)-transporting complex with the aid of PDZ domain-containing scaffolds, and this interaction is essential for regulation of NBC3 activity by CFTR. Furthermore, these findings add additional evidence for the suggestion that CFTR regulates the overall trans-cellular HCO(3)(-) transport by regulating the activity of all luminal HCO(3)(-) secretion and salvage mechanisms of secretory epithelial cells.

摘要

囊性纤维化跨膜传导调节因子(CFTR)在分泌上皮细胞中既调节HCO₃⁻分泌,也调节HCO₃⁻回收。至少有两种腔面转运蛋白介导HCO₃⁻回收,即钠/氢交换体(NHE3)和钠-碳酸氢根共转运体(NBC3)。在之前的研究中,我们发现CFTR与NHE3相互作用以调节其活性(安,W.,金,K.W.,李,J.A.,金,J.Y.,崔,J.Y.,莫,O.M.,米尔格拉姆,S.L.,穆阿莱姆,S.,以及李,M.G.(2001年)《生物化学杂志》276,17236 - 17243)。在本研究中,我们报告在HEK细胞中瞬时或稳定表达人NBC3(hNBC3)会导致一种依赖钠的、对4,4'-二异硫氰酸芪-2,2'-二磺酸(DIDS)和5-乙基异丙基amiloride不敏感的HCO₃⁻转运。用福司可林刺激CFTR可显著抑制NBC3活性。这种抑制可通过抑制蛋白激酶A来预防。NBC3和CFTR可从转染的HEK细胞以及天然胰腺、下颌下腺和腮腺中相互共免疫沉淀。从转染的HEK293细胞以及胰腺和下颌下腺中沉淀NBC3或CFTR时,也会共免疫沉淀EBP50。单独表达时,谷胱甘肽S-转移酶-EBP50从细胞裂解物中拉下CFTR和hNBC3,一起表达时则作为复合物拉下。值得注意的是,缺失CFTR或hNBC3的C末端PDZ结合基序会阻止蛋白质的共免疫沉淀以及CFTR对hNBC3活性的抑制。我们得出结论,CFTR和NBC3借助含PDZ结构域的支架存在于同一个HCO₃⁻转运复合物中,这种相互作用对于CFTR调节NBC3活性至关重要。此外,这些发现为CFTR通过调节分泌上皮细胞所有腔面HCO₃⁻分泌和回收机制的活性来调节整体跨细胞HCO₃⁻转运这一观点增添了更多证据。

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