Shen Z, Liu J, Marcus D C, Shiga N, Wangemann P
Biophysics Laboratory, Boys Town National Research Hospital, Omaha, NE 68131, USA.
J Membr Biol. 1995 Aug;146(3):283-91. doi: 10.1007/BF00233948.
Vestibular dark cell epithelium secretes K+ via IsK channels in the apical membrane. The previous observation that disulfonic stilbenes increased the equivalent short circuit current (Isc) suggested that these agents might be useful investigative tools in this tissue. The present experiments were conducted to determine if the increase in Isc was associated with an increase in K+ flux and if the effect was directly on the IsK channel or indirectly via a cytosolic intermediary. Measurements of transepithelial K+ flux with the K(+)-selective vibrating probe and of changes in net cellular solute flux by measurements of epithelial cell height showed that 4,4'-diisothiocyanatostilbene-2,2'-disulfonic acid (DIDS) increased K+ flux by a factor of 1.96 +/- 0.71 and caused net solute efflux. The apical membrane was partitioned with a macropatch pipette and DIDS was applied either to the membrane outside the pipette, inside the pipette or to the entire apical membrane. DIDS inside the pipette increased the current across the patch, the membrane conductance, the slowly-inactivating (IsK) component of the membrane current and shifted the reversal voltage toward the equilibrium potential for K+. DIDS outside the patch decreased the patch current and conductance, consistent with shunting of current away from the membrane patch. These findings strongly support the notion that DIDS increases K+ secretion through IsK channels in the apical membrane of vestibular dark cell epithelium by acting directly on the channels or on a tightly colocalized membrane component.
前庭暗细胞上皮通过顶端膜中的IsK通道分泌钾离子。之前观察到二磺酸芪增加了等效短路电流(Isc),这表明这些药物可能是研究该组织的有用工具。进行本实验是为了确定Isc的增加是否与钾离子通量的增加相关,以及该效应是直接作用于IsK通道还是通过胞质中介间接作用。用钾离子选择性振动探针测量跨上皮钾离子通量,并通过测量上皮细胞高度来测量细胞溶质净通量的变化,结果表明4,4'-二异硫氰酸芪-2,2'-二磺酸(DIDS)使钾离子通量增加了1.96±0.71倍,并导致溶质净流出。用巨膜片吸管分隔顶端膜,将DIDS施加到吸管外部的膜、吸管内部或整个顶端膜上。吸管内的DIDS增加了跨膜片的电流、膜电导、膜电流的缓慢失活(IsK)成分,并使反转电压向钾离子平衡电位移动。膜片外部的DIDS降低了膜片电流和电导,这与电流从膜片分流一致。这些发现有力地支持了这样一种观点,即DIDS通过直接作用于通道或紧密共定位的膜成分,增加了前庭暗细胞上皮顶端膜中通过IsK通道的钾离子分泌。