Neuroactive Drugs Screening Unit, Department of Physiology, Faculty of Biological Sciences, University of Concepción, Concepcion, Chile.
Neuropharmacology. 2011 Feb-Mar;60(2-3):453-9. doi: 10.1016/j.neuropharm.2010.10.023. Epub 2010 Oct 31.
In the present study we characterized the effects of the South American neurotoxin tutin on recombinant glycine receptors (GlyR) expressed in HEK 293 cells using whole-cell patch-clamp techniques. Tutin induced a concentration-dependent inhibition of α(1) and α(2) homomeric GlyRs, with IC(50)s of 35 ± 1 and 15 ± 3 μM, respectively. The co-expression of αβ subunits reduced the potency of tutin, thus increasing the IC(50) to 51 ± 4 and 41 ± 8 μM for α(1)β and α(2)β GlyRs, respectively. The inhibitory effect of tutin was competitive, independent of membrane potential and reversible suggesting a pore independent site. On the other hand, low tutin concentrations enhanced the current, which was not synergic with Zn(2+) or ethanol. A mutation in Lys385 altered ethanol but not tutin sensitivity, suggesting different sites for modulation of α1-containing GlyRs. Our results suggest that tutin affects the GlyR by a mechanism distinct to that of picrotoxin and ethanol, and that the pharmacological profile of tutin exhibits a "Zn-like" behaviour. In conclusion, these results provide information on molecular mechanisms important for understanding the toxic effects of a recently discovered South American neurotoxin.
在本研究中,我们采用全细胞膜片钳技术研究了南美神经毒素 tutin 对重组甘氨酸受体(GlyR)的作用。Tutin 可浓度依赖性地抑制α(1)和α(2)同型 GlyR,IC(50)值分别为 35±1 和 15±3 μM。αβ 亚基的共表达降低了 tutin 的效力,从而使α(1)β 和 α(2)β GlyR 的 IC(50)分别增加至 51±4 和 41±8 μM。Tutin 的抑制作用是竞争性的,不依赖于膜电位且可逆转,提示其作用部位与通道无关。另一方面,低浓度的 tutin 可增强电流,这种增强作用与 Zn(2+)或乙醇无协同作用。Lys385 突变改变了乙醇但未改变 tutin 的敏感性,提示不同的位点可调节含α1 的 GlyR。我们的结果表明,tutin 通过不同于士的宁和乙醇的机制影响 GlyR,且 tutin 的药理学特性表现出“Zn 样”行为。总之,这些结果为了解最近发现的南美神经毒素的毒性作用的分子机制提供了信息。