Shiells R A, Falk G
Biophysics Unit, Physiology Department, University College London, Gower Street, London WC1E 6BT, UK.
J Physiol. 2000 Oct 15;528 Pt 2(Pt 2):327-38. doi: 10.1111/j.1469-7793.2000.00327.x.
Retinal 'on' bipolar cells possess a metabotropic glutamate receptor (mGluR6) linked to the control of a G-protein and cGMP-activated channels which functions to generate high synaptic amplification of rod signals under dark-adapted conditions. Desensitization of 'on' bipolar cells is initiated by a rise in Ca2+ during background light too weak to adapt rod photoreceptors. Desensitization could also be elicited by raising intracellular Ca2+ above 1 microM. In order to investigate the mechanism of desensitization, whole-cell current responses to brief flashes and to steps of light were obtained from voltage-clamped 'on' bipolar cells in dark-adapted dogfish retinal slices. The inclusion of Ca2+-calmodulin kinase II (CaMKII) inhibitor peptides in the patch pipette solutions not only blocked desensitization of 'on' bipolar cells by dim background light and by 50 microM Ca2+, but also increased their flash sensitivity. The substrate of phosphorylation by CaMKII is the 'on' bipolar cell cGMP-activated channels. Desensitization probably results from a reduction in their sensitivity to cGMP and a voltage-dependent decrease in their conductance. A role for protein kinase C (PKC) in this process was excluded since activating PKC independently of Ca2+ with the phorbol ester PMA failed to induce desensitization of 'on' bipolar cells.
视网膜“开”双极细胞拥有一种与G蛋白和cGMP激活通道控制相关的代谢型谷氨酸受体(mGluR6),该通道在暗适应条件下能对视杆信号产生高突触放大作用。在背景光强度太弱以至于无法使视杆光感受器适应的情况下,“开”双极细胞的脱敏是由Ca2+浓度升高引发的。将细胞内Ca2+浓度提高到1微摩尔以上也能引发脱敏。为了研究脱敏机制,在暗适应的角鲨视网膜切片中,从电压钳制的“开”双极细胞获得了对短暂闪光和光阶跃的全细胞电流反应。在膜片钳吸管溶液中加入Ca2+-钙调蛋白激酶II(CaMKII)抑制肽,不仅能阻断暗背景光和50微摩尔Ca2+引起的“开”双极细胞脱敏,还能提高它们的闪光敏感性。CaMKII的磷酸化底物是“开”双极细胞的cGMP激活通道。脱敏可能是由于它们对cGMP的敏感性降低以及其电导的电压依赖性降低所致。由于用佛波酯PMA独立于Ca2+激活蛋白激酶C(PKC)未能诱导“开”双极细胞脱敏,因此排除了PKC在此过程中的作用。