SLC26A9的表征,碳酸氢盐对Cl(-)转运的促进作用。

IF 2 Q3 CELL BIOLOGY
Cellular Physiology and Biochemistry Pub Date : 2008-01-01 Epub Date: 2008-07-25 DOI:10.1159/000149780
Celine Loriol, Sandrine Dulong, Martine Avella, Nicole Gabillat, Kim Boulukos, Franck Borgese, Jordi Ehrenfeld
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引用次数: 66

摘要

SLC26家族成员是阴离子转运蛋白,参与Cl(-)和HCO(3)(-)在上皮内的吸收或分泌。SLC26A9优先在肺中表达,是该家族的一个特征较差的成员。在本研究中,我们研究了人SLC26A9的转运特性,以确定其功能和药理特性。SLC26A9蛋白的表达导致阴离子电流的出现,表现出明显的线性电流/电压关系,并增加(36)Cl的流入和流出。电导率的序列,Cl(-)(-) > >我没有葡萄糖酸(3)(-)> / = >所以(4)(2 -)和选择性(P (x) / P (CI)),我(-)> (3)(-)> Cl(-)葡萄糖酸> >所以(4)(2 -)被发现。Cl(-)通道抑制剂DIDS和NS 3623抑制SLC26A9相关电流,而特异性CFTR抑制剂CFTR(inh)-172或格列本脲对SLC26A9相关电流影响不大。细胞内cAMP(一种CFTR激活剂)的升高也是无效的,而细胞内钙的增加则会阻断SLC26A9相关电流。SLC26A9蛋白表达介导的HCO(3)(-)电导较低,在有利于Cl(-)/HCO(3)(-)交换的条件下,细胞内未检测到pHi变化。然而,HCO(3)(-)/CO(2)的存在刺激了非洲爪蟾卵母细胞或SLC26A9转导的COS-7细胞中SLC26A9的Cl(-)转运活性。作为表征SLC26A9功能的重要初始步骤,我们得出结论,SLC26A9是一个Cl(-)通道,我们建议HCO(3)(-)作为通道的调制器。SLC26A9在气道上皮中的生理作用及其与CFTR的潜在相互作用仍有待阐明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of SLC26A9, facilitation of Cl(-) transport by bicarbonate.

SLC26 family members are anionic transporters involved in Cl(-) and HCO(3)(-) absorption or secretion in epithelia. SLC26A9, preferentially expressed in the lung, is a poorly characterized member of this family. In this study, we investigated the transport properties of human SLC26A9 to determine its functional and pharmacological characteristics. SLC26A9 protein expression results in the appearance of an anionic current exhibiting an apparently linear current/voltage relationship and increases in (36)Cl influxes and effluxes. The sequences of conductivity, Cl(-) >I(-) > NO(3)(-) >/= gluconate > SO(4) (2-) and selectivity (P(x)/P(CI)), I(-) > NO(3)(-) > Cl(-) > gluconate > SO(4)(2-) are found. Cl(-) channel inhibitors DIDS and NS 3623 inhibit SLC26A9 associated currents while the specific CFTR inhibitor (CFTR(inh)-172) or glybenclamide has little effect. Elevation of intracellular cAMP (a CFTR activator) is also ineffective whereas increasing intracellular calcium blocks the SLC26A9 associated currents. The HCO(3)(-) conductance mediated by the SLC26A9 protein expression is low and no intracellular pHi changes are detectable under conditions favoring a Cl(-)/HCO(3)(-) exchange. However, the presence of HCO(3)(-)/CO(2) stimulates the Cl(-)-transporting activity of SLC26A9 in Xenopus laevis oocytes or SLC26A9-transduced COS-7 cells. As an important initial step in characterizing SLC26A9 function, we conclude that SLC26A9 is a Cl(-) channel and we suggest that HCO(3)(-) acts as a modulator of the channel. SLC26A9 physiological role in airway epithelia and its potential interaction with CFTR remain to be elucidated.

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来源期刊
CiteScore
5.80
自引率
0.00%
发文量
86
审稿时长
1 months
期刊介绍: Cellular Physiology and Biochemistry is a multidisciplinary scientific forum dedicated to advancing the frontiers of basic cellular research. It addresses scientists from both the physiological and biochemical disciplines as well as related fields such as genetics, molecular biology, pathophysiology, pathobiochemistry and cellular toxicology & pharmacology. Original papers and reviews on the mechanisms of intracellular transmission, cellular metabolism, cell growth, differentiation and death, ion channels and carriers, and the maintenance, regulation and disturbances of cell volume are presented. Appearing monthly under peer review, Cellular Physiology and Biochemistry takes an active role in the concerted international effort to unravel the mechanisms of cellular function.
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