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大鼠脑发育过程中钙通道α1B和β亚基的差异表达及相关性

Differential expression and association of calcium channel alpha1B and beta subunits during rat brain ontogeny.

作者信息

Vance C L, Begg C M, Lee W L, Haase H, Copeland T D, McEnery M W

机构信息

Department of Physiology and Biophysics, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106-4970, USA.

出版信息

J Biol Chem. 1998 Jun 5;273(23):14495-502. doi: 10.1074/jbc.273.23.14495.

Abstract

Calcium functions as an essential second messenger during neuronal development and synapse acquisition. Voltage-dependent calcium channels (VDCC), which are critical to these processes, are heteromultimeric complexes composed of alpha1, alpha2/delta, and beta subunits. beta subunits function to direct the VDCC complex to the plasma membrane as well as regulate its channel properties. The importance of beta to neuronal functioning was recently underscored by the identification of a truncated beta4 isoform in the epileptic mouse lethargic (lh) (Burgess, D. L., Jones, J. M., Meisler, M. H., and Noebels, J. L. (1997) Cell 88, 385-392). The goal of our study was to investigate the role of individual beta isoforms (beta1b, beta2, beta3, and beta4) in the assembly of N-type VDCC during rat brain development. By using quantitative Western blot analysis with anti-alpha1B-directed antibodies and [125I-Tyr22]omega-conotoxin GVIA (125I-CTX) radioligand binding assays, we observed that only a small fraction of the total alpha1B protein present in embryonic and early postnatal brain expressed high affinity 125I-CTX-binding sites. These results suggested that subsequent maturation of alpha1B or its assembly with auxiliary subunits was required to exhibit high affinity 125I-CTX binding. The temporal pattern of expression of beta subunits and their assembly with alpha1B indicated a developmental pattern of expression of beta isoforms: beta1b increased 3-fold from P0 to adult, beta4 increased 10-fold, and both beta2 and beta3 expression remained unchanged. As the beta component of N-type VDCC changed during postnatal development, we were able to identify both immature and mature forms of N-type VDCC. At P2, the relative contribution of beta is beta1b > beta3 >> beta2, whereas at P14 and adult the distribution is beta3 > beta1b = beta4. Although we observed no beta4 associated with the alpha1B at P2, beta4 accounted for 14 and 25% of total alpha1B/beta subunit complexes in P14 and adult, respectively. Thus, of the beta isoforms analyzed, only the beta4 was assembled with the rat alpha1B to form N-type VDCC with a time course that paralleled its level of expression during rat brain development. These results suggest a role for the beta4 isoform in the assembly and maturation of the N-type VDCC.

摘要

钙在神经元发育和突触形成过程中作为一种必需的第二信使发挥作用。对这些过程至关重要的电压依赖性钙通道(VDCC)是由α1、α2/δ和β亚基组成的异源多聚体复合物。β亚基的作用是将VDCC复合物导向质膜并调节其通道特性。最近在癫痫小鼠嗜睡(lh)中鉴定出截短的β4异构体,这突出了β对神经元功能的重要性(Burgess,D.L.,Jones,J.M.,Meisler,M.H.和Noebels,J.L.(1997)《细胞》88,385 - 392)。我们研究的目的是探讨单个β异构体(β1b、β2、β3和β4)在大鼠脑发育过程中N型VDCC组装中的作用。通过使用抗α1B定向抗体的定量蛋白质免疫印迹分析和[125I - Tyr22]ω - 芋螺毒素GVIA(125I - CTX)放射性配体结合测定,我们观察到在胚胎期和出生后早期大脑中存在的总α1B蛋白中只有一小部分表达高亲和力的125I - CTX结合位点。这些结果表明,α1B随后的成熟或其与辅助亚基的组装是表现出高亲和力125I - CTX结合所必需的。β亚基的表达时间模式及其与α1B的组装表明了β异构体的发育性表达模式:β1b从出生后第0天到成年增加了3倍,β4增加了10倍,而β2和β3的表达均保持不变。由于N型VDCC的β成分在出生后发育过程中发生变化,我们能够鉴定出N型VDCC的未成熟和成熟形式。在出生后第2天,β的相对贡献为β1b > β3 >> β2,而在出生后第14天和成年时,分布为β3 > β1b = β4。尽管我们在出生后第2天未观察到β4与α1B相关联,但β4分别占出生后第1天和成年时总α1B/β亚基复合物的14%和25%。因此,在所分析的β异构体中,只有β4与大鼠α1B组装形成N型VDCC,其时间进程与其在大鼠脑发育过程中的表达水平平行。这些结果表明β4异构体在N型VDCC的组装和成熟中起作用。

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