McEnery M W, Copeland T D, Vance C L
Department of Physiology and Biophysics, Case Western Reserve University, School of Medicine, Cleveland, Ohio 44106-4970, USA.
J Biol Chem. 1998 Aug 21;273(34):21435-8. doi: 10.1074/jbc.273.34.21435.
Voltage-dependent calcium channels (VDCC) are multisubunit complexes whose expression and targeting require the assembly of the pore-forming alpha1 with auxiliary beta and alpha2/delta subunits. The developmentally regulated expression and differential assembly of beta isoforms with the alpha1B subunit to form N-type VDCC suggested a unique role for the beta4 isoform in VDCC maturation (Vance, C. L., Begg, C. M., Lee, W.-L., Haase, H., Copeland, T. D., and McEnery, M. W. (1998) J. Biol. Chem. 273, 14495-14502). The focus of this study is the expression and assembly of alpha1B and beta isoforms in the epileptic mouse, lethargic (lh/lh), a mutant anticipated to produce a truncated beta4 subunit (Burgess, D. L., Jones, J. M., Meisler, M. H., and Noebels, J. L. (1997) Cell 88, 385-392). In this report, we demonstrate that neither full-length nor truncated beta4 protein is expressed in lh/lh mice. The absence of beta4 in lh/lh mice is associated with decreased expression of N-type VDCC in forebrain and cerebellum. The most surprising characteristic of the lh/lh mouse is increased expression of beta1b protein. This result suggests a previously unidentified cellular mechanism wherein expression of the total pool of available beta subunits is under tight metabolic regulation. As a consequence of increased beta1b expression, the beta1b is increased in its incorporation into alpha1B/beta complexes relative to wild type. Thus, in striking similarity to the population of N-type VDCC present in immature rat brain, the population of N-type VDCC present in adult lh/lh mice is characterized by the absence of beta4 with increased beta1b expression and assembly into N-type VDCC. It is intriguing to speculate that the increased excitability and susceptibility to seizures observed in the lh/lh mouse arises from the inappropriate expression of an immature population of N-type VDCC throughout neuronal development.
电压依赖性钙通道(VDCC)是多亚基复合物,其表达和靶向需要形成孔道的α1亚基与辅助性β亚基和α2/δ亚基进行组装。β亚型与α1B亚基的发育调控表达及差异组装形成N型VDCC,提示β4亚型在VDCC成熟过程中具有独特作用(万斯,C.L.,贝格,C.M.,李,W.-L.,哈泽,H.,科普兰,T.D.,和麦克埃纳里,M.W.(1998年)《生物化学杂志》273卷,14495 - 14502页)。本研究的重点是癫痫小鼠嗜睡(lh/lh)中α1B和β亚型的表达与组装,该突变体预计会产生截短的β4亚基(伯吉斯,D.L.,琼斯,J.M.,梅斯勒,M.H.,和诺伊贝尔斯,J.L.(1997年)《细胞》88卷,385 - 392页)。在本报告中,我们证明在lh/lh小鼠中既不表达全长β4蛋白,也不表达截短的β4蛋白。lh/lh小鼠中β4的缺失与前脑和小脑中N型VDCC表达减少有关。lh/lh小鼠最令人惊讶的特征是β1b蛋白表达增加。这一结果提示了一种此前未被识别的细胞机制,即可用β亚基的总库表达受到严格的代谢调控。由于β1b表达增加,相对于野生型,β1b掺入α1B/β复合物的比例增加。因此,与未成熟大鼠脑中存在的N型VDCC群体极为相似,成年lh/lh小鼠中存在的N型VDCC群体的特征是缺乏β4,β1b表达增加并组装到N型VDCC中。有趣的是,可以推测在lh/lh小鼠中观察到的兴奋性增加和癫痫易感性源于整个神经元发育过程中未成熟N型VDCC群体的不适当表达。