Kang Dawon, Kim Donghee
Department of Physiology and Biophysics, The Chicago Medical School, 3333 Green Bay Road, North Chicago, IL 60064, USA.
Biochem Biophys Res Commun. 2004 Mar 19;315(4):836-44. doi: 10.1016/j.bbrc.2004.01.137.
The two-pore K2P channel family comprises TASK, TREK, TWIK, TRESK, TALK, and THIK subfamilies, and TALK-1, TALK-2, and TASK-2 are functional members of the TALK subfamily. Here we report for the first time the single-channel properties of TALK-2 and its pHo sensitivity, and compare them to those of TALK-1 and TASK-2. In transfected COS-7 cells, the three TALK K2P channels could be identified easily by their differences in single-channel conductance and gating kinetics. The single-channel conductances of TALK-1, TALK-2, and TASK-2 in symmetrical 150 mM KCl were 21, 33, and 70 pS (-60 mV), respectively. TALK-2 was sensitive mainly to the alkaline range (pH 7-10), whereas TALK-1 and TASK-2 were sensitive to a wider pHo range (6-10). The effect of pH changes was mainly on the opening frequency. Thus, members of the TALK family expressed in native tissues may be identified based on their single-channel kinetics and pHo sensitivity.
双孔K2P通道家族包括TASK、TREK、TWIK、TRESK、TALK和THIK亚家族,其中TALK-1、TALK-2和TASK-2是TALK亚家族的功能性成员。在此,我们首次报道了TALK-2的单通道特性及其对细胞外pH值(pHo)的敏感性,并将其与TALK-1和TASK-2进行比较。在转染的COS-7细胞中,这三种TALK K2P通道可通过其单通道电导和门控动力学的差异轻松识别。在对称的150 mM KCl中,TALK-1、TALK-2和TASK-2的单通道电导分别为21、33和70 pS(-60 mV)。TALK-2主要对碱性范围(pH 7 - 10)敏感,而TALK-1和TASK-2对更宽的pHo范围(6 - 10)敏感。pH变化的影响主要在于开放频率。因此,在天然组织中表达的TALK家族成员可根据其单通道动力学和pHo敏感性来识别。