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检查间隙连接半通道时的陷阱:容积调节性阴离子通道的干扰。

Pitfalls when examining gap junction hemichannels: interference from volume-regulated anion channels.

作者信息

Bader Patrick, Weingart Robert

机构信息

Department of Physiology, University of Bern, Bühlplatz 5, CH-3012, Bern, Switzerland.

出版信息

Pflugers Arch. 2006 Jul;452(4):396-406. doi: 10.1007/s00424-006-0046-9. Epub 2006 Apr 8.

Abstract

Human HeLa cells transfected with mouse connexin45 were used to explore the experimental conditions suitable to measure currents carried by gap junction hemichannels. Experiments were performed with a voltage-clamp technique and whole-cell recording. Lowering Ca(2+) from 2 mM to 20 nM evoked an extra current, I (m), putatively carried by Cx45 hemichannels. However, the variability of I (m) (size, voltage sensitivity, kinetics) suggested the involvement of other channels. The finding that growth medium in the incubator increased the osmolarity with time implied that volume-regulated anion channels (VRAC) may participate. This assumption was reinforced by the following observations. On the one hand, keeping Ca(2+) normal while the osmolarity of the extracellular solution was reduced from 310 to 290 mOsm yielded a current characteristic of VRAC; I (VRAC) activated/deactivated at negative/positive voltage, giving rise to the conductance functions g (VRAC,inst)=f(V (m)) (inst: instantaneous; V (m): membrane potential) and g (VRAC,ss)=f(V (m)) (ss: steady state). Moreover, it was reversibly inhibited by mibefradil, a Cl(-)channel blocker (binding constant K (d)=38 microM, Hill coefficient n=12), but not by the gap junction channel blocker 18alpha-glycyrrhetinic acid. On the other hand, minimizing the osmotic imbalance while Ca(2+) was reduced led to a current typical for Cx45 hemichannels; I (hc) activated/deactivated at positive/negative voltage. Furthermore, it was reversibly inhibited by 18alpha-glycyrrhetinic acid or palmitoleic acid, but not by mibefradil. Computations based on g (VRAC,ss)=f(V (m)) and g (hc,ss)=f(V (m)) indicated that the concomitant operation of both currents results in a bell-shaped conductance-voltage relationship. The functional implications of the data presented are discussed. Conceivably, VRAC and hemichannels are involved in a common signaling pathway.

摘要

用转染了小鼠连接蛋白45的人HeLa细胞来探索适合测量间隙连接半通道所携带电流的实验条件。实验采用电压钳技术和全细胞记录进行。将细胞外钙离子浓度Ca(2+)从2 mM降至20 nM会诱发一种额外电流I(m),推测由Cx45半通道携带。然而,I(m)的变异性(大小、电压敏感性、动力学)表明有其他通道参与。培养箱中的生长培养基渗透压随时间增加这一发现意味着容积调节性阴离子通道(VRAC)可能参与其中。以下观察结果进一步强化了这一假设。一方面,在细胞外溶液渗透压从310 mOsm降至290 mOsm时保持Ca(2+)正常,会产生VRAC的典型电流;I(VRAC)在负/正电压下激活/失活,产生电导函数g(VRAC,inst)=f(V(m))(inst:瞬时;V(m):膜电位)和g(VRAC,ss)=f(V(m))(ss:稳态)。此外,它可被Cl(-)通道阻滞剂米贝拉地尔可逆抑制(结合常数K(d)=38 microM,希尔系数n=12),但不能被间隙连接通道阻滞剂18α-甘草次酸抑制。另一方面,在降低Ca(2+)时尽量减少渗透压失衡会导致Cx45半通道的典型电流;I(hc)在正/负电压下激活/失活。此外,它可被18α-甘草次酸或棕榈油酸可逆抑制,但不能被米贝拉地尔抑制。基于g(VRAC,ss)=f(V(m))和g(hc,ss)=f(V(m))的计算表明,两种电流同时作用会导致电导-电压关系呈钟形。文中讨论了所呈现数据的功能意义。可以想象,VRAC和半通道参与了一个共同的信号通路。

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