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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Expression of Rem2, an RGK family small GTPase, reduces N-type calcium current without affecting channel surface density.
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Expression of Rem2, an RGK family small GTPase, reduces N-type calcium current without affecting channel surface density.

机译:RGK家族小GTP酶Rem2的表达可降低N型钙电流,而不会影响通道表面密度。

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摘要

Rad, Gem/Kir, Rem, and Rem2 are members of the Ras-related RGK (Rad, Gem, and Kir) family of small GTP-binding proteins. Heterologous expression of RGK proteins interferes with de novo calcium channel assembly/trafficking and dramatically decreases the amplitude of currents arising from preexisting high-voltage-activated calcium channels. These effects probably result from the direct interaction of RGK proteins with calcium channel beta subunits. Among the RGK family, Rem2 is the only member abundantly expressed in neuronal tissues. Here, we examined the ability of Rem2 to modulate endogenous voltage-activated calcium channels in rat sympathetic and dorsal root ganglion neurons. Heterologous expression of Rem2 nearly abolished calcium currents arising from preexisting high-voltage-activated calcium channels without affecting low-voltage-activated calcium channels. Rem2 inhibition of N-type calcium channels required both the Ras homology (core) domain and the polybasic C terminus. Mutation of a putativeGTP/Mg2+ binding motif in Rem2 did not affect suppression of calcium currents. Loading neurons with GDP-beta-S via the patch pipette did not reverse Rem2-mediated calcium channel inhibition. Finally, [(125)I]Tyr22-omega-conotoxin GVIA cell surface binding in tsA201 cells stably expressing N-type calcium channels was not altered by Rem2 expression at a time when calcium current was totally abolished. Together, our results support a model in which Rem2 localizes to the plasma membrane via a C-terminal polybasic motif and interacts with calcium channel beta subunits in the preassembled N-type channel, thereby forming a nonconducting species.
机译:Rad,Gem / Kir,Rem和Rem2是小GTP结合蛋白的Ras相关RGK(Rad,Gem和Kir)家族的成员。 RGK蛋白的异源表达干扰了从头钙通道的组装/运输,并大大降低了由预先存在的高压激活钙通道引起的电流幅度。这些作用可能是由于RGK蛋白与钙通道β亚基的直接相互作用所致。在RGK家族中,Rem2是唯一在神经元组织中大量表达的成员。在这里,我们检查了Rem2调节大鼠交感神经和背根神经节神经元内源性电压激活钙通道的能力。 Rem2的异源表达几乎消除了由先前存在的高压激活钙通道引起的钙电流,而不会影响低压激活钙通道。 Rem2对N型钙通道的抑制需要Ras同源性(核心)结构域和多元C末端。 Rem2中假定的GTP / Mg2 +结合基序的突变不会影响钙电流的抑制。通过贴片移液器向神经元加载GDP-β-S不会逆转Rem2介导的钙通道抑制作用。最后,在完全消除钙电流时,Rem2表达不会改变稳定表达N型钙通道的tsA201细胞中的[(125)I]Tyr22-ω-芋螺毒素GVIA细胞表面结合。在一起,我们的结果支持一个模型,其中Rem2通过C端多元基序定位于质膜并与预组装的N型通道中的钙通道β亚基相互作用,从而形成非导电物质。

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