Shi J, Takahashi S, Jin X-H, Li Y-Q, Ito Y, Mori Y, Inoue R
Department of Anatomy and K.K Leung Brain Research Centre, The Fourth Military Medical University, Xi'an, China.
Br J Pharmacol. 2007 Sep;152(1):122-31. doi: 10.1038/sj.bjp.0707368. Epub 2007 Jul 2.
Myosin light chain kinase (MLCK) plays a pivotal role in regulation of cellular functions, the evidence often relying on the effects of extracelluarly administered drugs such as ML-9. Here we report that this compound exerts non-specific inhibitory actions on the TRPC6 channel, a transient receptor potential (TRP) protein.
Macroscopic and single channel currents were recorded from transfected HEK293 cells by patch-clamp techniques.
Cationic currents elicited by carbachol (CCh; 100 microM) in HEK293 cells overexpressing murine TRPC6 (I(TRPC6)) were dose-dependently inhibited by externally applied ML-9 (IC(50)=7.8 microM). This inhibition was voltage-dependent and occurred as fast as external Na(+) removal. Another MLCK inhibitor, wortmannin (3 microM), and MLCK inhibitory peptides MLCK-IP(11-19) (10 microM) and -IP(480-501) (1 microM) showed little effects on I(TRPC6) density and the inhibitory efficacy of ML-9. The extent of the inhibition also unchanged with co-expression of wild-type or a dominant negative mutant of MLCK. Inhibitory effects of ML-9 on I(TRPC6) remained unaffected whether TRPC6 was activated constitutively or by a diacylglycerol analogue OAG (100 microM). Similar rapid inhibition was also observed with a ML-9 relative, ML-7. Intracellular perfusion of ML-9 via patch pipette, dose-dependently suppressed I(TRPC6). In inside-out patch configuration, bath application of ML-9 (and ML-7) rapidly diminished approximately 35pS single TRPC6 channel activities. Contrarily, currents due to TRPC7 expression were rapidly enhanced by externally applied ML-9 and ML-7, which was not prevented by MLCK inhibitory peptides.
These results strongly suggest that ML compounds inhibit TRPC6 channels via a mechanism independent of inhibition of MLCK activity.
肌球蛋白轻链激酶(MLCK)在细胞功能调节中起关键作用,相关证据通常依赖于细胞外施用药物(如ML-9)的作用。在此,我们报告该化合物对瞬时受体电位(TRP)蛋白TRPC6通道具有非特异性抑制作用。
采用膜片钳技术从转染的HEK293细胞记录宏观电流和单通道电流。
在过表达小鼠TRPC6的HEK293细胞中,由卡巴胆碱(CCh;100μM)引发的阳离子电流(I(TRPC6))受到细胞外施用的ML-9剂量依赖性抑制(IC(50)=7.8μM)。这种抑制是电压依赖性的,并且与外部去除Na(+)一样迅速发生。另一种MLCK抑制剂渥曼青霉素(3μM)以及MLCK抑制肽MLCK-IP(11-19)(10μM)和-IP(480-501)(1μM)对I(TRPC6)密度和ML-9的抑制效力几乎没有影响。ML-9的抑制程度在共表达野生型或MLCK的显性负突变体时也没有变化。无论TRPC6是组成性激活还是由二酰基甘油类似物OAG(100μM)激活,ML-9对I(TRPC6)的抑制作用均不受影响。使用ML-9的类似物ML-7也观察到了类似的快速抑制作用。通过膜片电极向细胞内灌注ML-9,剂量依赖性地抑制I(TRPC6)。在膜内面向外的膜片配置中,向浴槽中施加ML-9(和ML-7)迅速降低了约35pS的单个TRPC6通道活性。相反,由TRPC7表达引起的电流受到细胞外施用的ML-9和ML-7的迅速增强,而MLCK抑制肽并不能阻止这种增强。
这些结果强烈表明,ML化合物通过一种独立于抑制MLCK活性的机制抑制TRPC6通道。