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Sodium channel β2 subunit promotes filopodia-like processes and expansion of the dendritic tree in developing rat hippocampal neurons

机译:钠通道β2亚基促进发育中的大鼠海马神经元的丝状伪足样过程和树突状树的扩张

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摘要

The β2 auxiliary subunit of voltage-gated sodium channels (VGSCs) appears at early stages of brain development. It is abundantly expressed in the mammalian central nervous system where it forms complexes with different channel isoforms, including Nav1.2. From the structural point of view, β2 is a transmembrane protein: at its extracellular N-terminus an Ig-like type C2 domain mediates the binding to the pore-forming alpha subunit with disulfide bonds and the interactions with the extracellular matrix. Given this structural versatility, β2 has been suggested to play multiple functions ranging from channel targeting to the plasma membrane and gating modulation to control of cell adhesion. We report that, when expressed in Chinese Hamster Ovary cells CHO-K1, the subunit accumulates at the perimetral region of adhesion and particularly in large lamellipodia-like membrane processes where it induces formation of filopodia-like structures. When overexpressed in developing embryonic rat hippocampal neurons in vitro, β2 specifically promotes formation of filopodia-like processes in dendrites leading to expansion of the arborization tree, while axonal branching remains unaltered. In contrast to this striking and highly specific effect on dendritic morphology, the targeting of functional sodium channels to the plasma membrane, including the preferential localization of Nav1.2 at the axon, and their gating properties are only minimally affected. From these and previously reported observations it is suggested that β2, among its multiple functions, may contribute to promote dendritic outgrowth and to regulate neuronal wiring at specific stages of neuronal development.
机译:电压门控钠通道(VGSC)的β2辅助亚基出现在大脑发育的早期阶段。它在哺乳动物中枢神经系统中大量表达,在其中与包括Nav1.2在内的不同通道同工型形成复合体。从结构的角度来看,β2是跨膜蛋白:在其细胞外N端,Ig样C2型结构域介导与具有二硫键的成孔α亚基的结合以及与细胞外基质的相互作用。考虑到这种结构的多功能性,有人建议β2发挥多种功能,包括从通道靶向质膜和门控调节到细胞粘附控制。我们报告说,当在中国仓鼠卵巢细胞CHO-K1中表达时,该亚基堆积在粘连的周围区域,尤其是在大型片状脂膜样膜过程中,它诱导形成丝状伪足样结构。当在体外发育中的胚胎大鼠海马神经元中过表达时,β2特异性地促进树突中丝状伪足样过程的形成,从而导致树状树的扩张,而轴突分支保持不变。与对树突形态的这种惊人且高度特异的影响相反,功能性钠通道靶向质膜,包括Nav1.2在轴突上的优先定位及其门控特性受到的影响极小。根据这些和先前报道的观察结果,建议β2在其多种功能中,可能有助于促进树突生长并在神经元发育的特定阶段调节神经元接线。

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