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CAMP INCREASES APICAL I-SK CHANNEL CURRENT AND K+ SECRETION IN VESTIBULAR DARK CELLS

机译:营收增加了前庭干细胞中API I-SK通道电流和K +分泌

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摘要

Adenosine 3',5'-cyclic monophosphate (cAMP) is known to stimulate exogenous I-sK channel current in the Xenopus oocyte expression system. The present study was performed to determine whether elevation of cytosolic cAMP in a native mammalian epithelium known to secrete K+ through endogenously expressed I-sK channels would stimulate K+ secretion through these channels. The equivalent short circuit current (I-sc) across vestibular dark cell epithelium in gerbil was measured in a micro-Ussing chamber and the apical membrane current (I-IsK) and conductance (g(IsK)) of I-sK channels was recorded with both the on-cell macro-patch and nystatin-perforated whole-cell patch-clamp techniques. It has previously been shown that I-sc can be accounted for by transepithelial K+ secretion and that the apical I-sK channels constitute a significant pathway for K+ secretion. The identification of the voltage-dependent whole-cell currents in vestibular dark cells was strengthened by the finding that a potent blocker of I-sK channels, chromanol 293B, strongly reduced I-IsK from 646 +/- 200 to 154 +/- 22 pA (71%) and g(IsK) from 7.5 +/- 2.6 to 2.8 +/- 0.4 nS (53%). Cytoplasmic cAMP was elevated by applying dibutyryl cyclic AMP (dbcAMP), or the phosphodiesterase inhibitors 3-isobutyl-1-methylxanthine (IBMX) and Ro-20-1724. dbcAMP (1 mM) increased I-sc and I-IsK from 410 +/- 38 to 534 +/- 40 mu A/cm(2) and from 4.3 +/- 0.8 to 11.4 +/- 2.2 pA, respectively. IBMX (1 mM) caused transient increases of I,, from 415 +/- 30 to 469 +/- 38 mu A/cm(2) and Ro-20-1724 (0.1 mM) from 565 +/- 43 to 773 +/- 58 mu A/cm(2). IBMX increased I-IsK from 5.5 +/- 1.5 to 16.9 +/- 5.8 pA in on-cell experiments and from 191 +/- 31 to 426 +/- 53 pA in whole-cell experiments. The leak conductance due to all non-I-sK channel sources did not change during dbcAMP and IBMX while 293B in the presence of dbcAMP reduced I-Isk by 84% and g(IsK) by 62%, similar to unstimulated conditions. These results demonstrate that the cAMP pathway is constitutively active in vestibular dark cells and that the cAMP pathway stimulates transepithelial K+ secretion by increasing I-sK channel current rather than by altering another transport pathway. [References: 64]
机译:已知腺苷3',5'-环一磷酸(cAMP)在非洲爪蟾卵母细胞表达系统中刺激外源性I-sK通道电流。进行本研究是为了确定已知通过内源表达的I-sK通道分泌K +的天然哺乳动物上皮中胞质cAMP的升高是否会刺激通过这些通道的K +分泌。在微型使用室中测量沙土鼠前庭暗细胞上皮的等效短路电流(I-sc),并记录I-sK通道的顶膜电流(I-IsK)和电导(g(IsK))细胞上宏膜片和制霉菌素穿孔的全细胞膜片钳技术。先前已经证明,I-sc可以通过上皮K +分泌来解释,并且顶端I-sK通道构成了K +分泌的重要途径。通过发现强力的I-sK通道苯并二氢吡喃酚293B可以将I-IsK从646 +/- 200强烈降低到154 +/- 22,从而增强了对前庭暗细胞中电压依赖性全细胞电流的识别。 pA(71%)和g(IsK)从7.5 +/- 2.6到2.8 +/- 0.4 nS(53%)。通过应用二丁酰基环AMP(dbcAMP)或磷酸二酯酶抑制剂3-异丁基-1-甲基黄嘌呤(IBMX)和Ro-20-1724,可提高细胞质cAMP的水平。 dbcAMP(1 mM)将I-sc和I-IsK从410 +/- 38分别提高到534 +/- 40μA/ cm(2)和从4.3 +/- 0.8到11.4 +/- 2.2 pA。 IBMX(1 mM)导致I的瞬时增加,从415 +/- 30增至469 +/- 38μA/ cm(2)和Ro-20-1724(0.1 mM)从565 +/- 43增至773 + /-58亩A / cm(2)。在细胞实验中,IBMX将I-IsK从5.5 +/- 1.5 pA增加到16.9 +/- 5.8 pA,在全细胞实验中,从191 +/- 31 pA增加到426 +/- 53 pA。在dbcAMP和IBMX期间,由于所有非I-sK通道源引起的泄漏电导没有改变,而在存在dbcAMP的情况下293B使I-Isk降低了84%,g(IsK)降低了62%,这与未刺激的情况相似。这些结果表明,cAMP途径在前庭暗细胞中具有组成性活性,并且cAMP途径通过增加I-sK通道电流而不是通过改变另一种运输途径来刺激经上皮K +分泌。 [参考:64]

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