Friedrich T, Breiderhoff T, Jentsch T J
Zentrum für Molekulare Neurobiologie Hamburg (ZMNH), Hamburg University, Martinistrabetae 52, D-20246, Hamburg, Germany.
J Biol Chem. 1999 Jan 8;274(2):896-902. doi: 10.1074/jbc.274.2.896.
ClC-4 and ClC-5, together with ClC-3, form a distinct branch of the CLC chloride channel family. Although ClC-5 was shown to be mainly expressed in endocytotic vesicles, expression of ClC-5 in Xenopus oocytes elicited chloride currents. We now show that ClC-4 also gives rise to strongly outwardly rectifying anion currents when expressed in oocytes. They closely resemble ClC-5 currents with which they share a NO3- > Cl- > Br- > I- conductance sequence that differs from that reported for the highly homologous ClC-3. Both ClC-4 and ClC-5 currents are reduced by lowering extracellular pH. We could measure similar currents after expressing either channel in HEK293 cells. To demonstrate that these currents are directly mediated by the channel proteins, we introduced several point mutations that change channel characteristics. In ClC-5, several point mutations alter the kinetics of activation but leave macroscopic rectification and ion selectivity unchanged. A mutation (N565K) equivalent to a mutation reported to have profound effects on ClC-3 does not have similar effects on ClC-5. Moreover, a mutation at the end of D2 (S168T in ClC-5) changes ion selectivity, and a mutation at the end of D3 (E211A in ClC-5 and E224A in ClC-4) changes voltage dependence and ion selectivity. This shows that ClC-4 and ClC-5 can directly mediate plasma membrane currents.
ClC-4和ClC-5与ClC-3一起构成了CLC氯离子通道家族的一个独特分支。尽管已表明ClC-5主要在内吞小泡中表达,但在非洲爪蟾卵母细胞中表达ClC-5会引发氯离子电流。我们现在表明,当在卵母细胞中表达时,ClC-4也会产生强烈外向整流的阴离子电流。它们与ClC-5电流非常相似,二者共享NO3->Cl->Br->I-的电导序列,这与高度同源的ClC-3所报道的不同。降低细胞外pH值会使ClC-4和ClC-5电流均减小。在HEK293细胞中表达任一通道后,我们都能测量到类似的电流。为了证明这些电流是由通道蛋白直接介导的,我们引入了几个改变通道特性的点突变。在ClC-5中,几个点突变改变了激活动力学,但宏观整流和离子选择性不变。一个与据报道对ClC-3有深远影响的突变等效的突变(N565K)对ClC-5没有类似影响。此外,D2末端的一个突变(ClC-5中的S168T)改变了离子选择性,D3末端的一个突变(ClC-5中的E211A和ClC-4中的E224A)改变了电压依赖性和离子选择性。这表明ClC-4和ClC-5可以直接介导质膜电流。