Velázquez-Marrero Cristina, Seale Garrett E, Treistman Steven N, Martin Gilles E
the Institute of Neurobiology, University of Puerto Rico Medical Sciences Campus, San Juan, Puerto Rico 00901.
the Institute of Neurobiology, University of Puerto Rico Medical Sciences Campus, San Juan, Puerto Rico 00901
J Biol Chem. 2014 Oct 17;289(42):29261-72. doi: 10.1074/jbc.M114.604306. Epub 2014 Sep 4.
Tolerance is a well described component of alcohol abuse and addiction. The large conductance voltage- and Ca(2+)-gated potassium channel (BK) has been very useful for studying molecular tolerance. The influence of association with the β4 subunit can be observed at the level of individual channels, action potentials in brain slices, and finally, drinking behavior in the mouse. Previously, we showed that 50 mm alcohol increases both α and αβ4 BK channel open probability, but only α BK develops acute tolerance to this effect. Currently, we explore the possibility that the influence of the β4 subunit on tolerance may result from a striking effect of β4 on kinase modulation of the BK channel. We examine the influence of the β4 subunit on PKA, CaMKII, and phosphatase modulation of channel activity, and on molecular tolerance to alcohol. We record from human BK channels heterologously expressed in HEK 293 cells composed of its core subunit, α alone (Insertless), or co-expressed with the β4 BK auxiliary subunit, as well as, acutely dissociated nucleus accumbens neurons using the cell-attached patch clamp configuration. Our results indicate that BK channels are strongly modulated by activation of specific kinases (PKA and CaMKII) and phosphatases. The presence of the β4 subunit greatly influences this modulation, allowing a variety of outcomes for BK channel activity in response to acute alcohol.
耐受性是酒精滥用和成瘾中一个已被充分描述的组成部分。大电导电压和钙(2+)门控钾通道(BK)在研究分子耐受性方面非常有用。在单个通道水平、脑片动作电位以及最终小鼠的饮酒行为中都可以观察到与β4亚基结合的影响。此前,我们发现50毫米酒精会增加α和αβ4 BK通道的开放概率,但只有α BK对这种效应产生急性耐受性。目前,我们探讨β4亚基对耐受性的影响可能源于β4对BK通道激酶调节的显著作用这一可能性。我们研究β4亚基对PKA、CaMKII以及通道活性的磷酸酶调节的影响,以及对酒精分子耐受性的影响。我们使用细胞贴附式膜片钳配置,从在HEK 293细胞中异源表达的人BK通道进行记录,这些通道由其核心亚基α单独组成(无插入片段),或与β4 BK辅助亚基共表达,以及从急性分离的伏隔核神经元进行记录。我们的结果表明,BK通道受到特定激酶(PKA和CaMKII)和磷酸酶激活的强烈调节。β4亚基的存在极大地影响这种调节,使得BK通道活性在急性酒精作用下产生多种结果。