Bobkov Yuriy V, Ache Barry W
Whitney Laboratory, University of Florida, Gainesville, Florida 32601, USA.
J Neurophysiol. 2003 Nov;90(5):2928-40. doi: 10.1152/jn.00181.2003. Epub 2003 Jul 2.
We report that a Na+-activated nonselective cation channel described previously in lobster olfactory neurons, in which phosphoinositide signaling mediates olfactory transduction, can also be activated by Ca2+. Ca2+ activates the channel in the presence of Na+, increasing the open probability of the channel with a K1/2 of 490 nM and a Hill coefficient of 1.3. Ca2+ also increases the sensitivity of the channel to Na+. In some cells, the same channel is Ca2+ insensitive in a cell-specific manner. The nonspecific activator of protein phosphatases, protamine, applied to the intracellular face of patches containing the channel irreversibly eliminates the sensitivity to Ca2+. This effect can be blocked by okadaic acid, a nonspecific blocker of protein phosphatases, and restored by the catalytic subunit of protein kinase A in the presence of MgATP. The Ca2+-sensitive form of the channel is predominantly expressed in the transduction zone of the cells in situ. These findings imply that the Ca2+ sensitivity of the channel, and possibly its regulation by phosphorylation, play a role in olfactory transduction and help tie activation of the channel to the canonical phosphoinositide turnover pathway.
我们报告称,先前在龙虾嗅觉神经元中描述的一种Na⁺激活的非选择性阳离子通道,其中磷酸肌醇信号传导介导嗅觉转导,也可被Ca²⁺激活。Ca²⁺在Na⁺存在的情况下激活该通道,以490 nM的K1/2和1.3的希尔系数增加通道的开放概率。Ca²⁺还增加了通道对Na⁺的敏感性。在一些细胞中,同一通道以细胞特异性方式对Ca²⁺不敏感。应用于含有该通道的膜片细胞内面的蛋白磷酸酶非特异性激活剂鱼精蛋白,不可逆地消除了对Ca²⁺的敏感性。这种效应可被蛋白磷酸酶非特异性阻滞剂冈田酸阻断,并在MgATP存在的情况下由蛋白激酶A的催化亚基恢复。该通道的Ca²⁺敏感形式主要原位表达于细胞的转导区。这些发现表明,通道的Ca²⁺敏感性及其可能的磷酸化调节在嗅觉转导中起作用,并有助于将通道的激活与经典的磷酸肌醇周转途径联系起来。