Dougherty Kevin, Tu Liwei, Deutsch Carol, Covarrubias Manuel
Department of Pathology, Anatomy and Cell Biology, Jefferson Medical College of Thomas Jefferson University, Philadelphia, PA, USA.
Channels (Austin). 2009 Mar-Apr;3(2):122-8. doi: 10.4161/chan.3.2.8333. Epub 2009 Mar 3.
Auxiliary beta-subunits dictate the physiological properties of voltage-gated K(+) (K(V)) channels in excitable tissues. In many instances, however, the underlying mechanisms of action are poorly understood. The dipeptidyl-aminopeptidase-like protein 6 (DPP6) is a specific beta-subunit of neuronal K(V)4 channels, which may promote gating through interactions between the single transmembrane segment of DPP6 and the channel's voltage sensing domain (VSD). A combination of gating current measurements and protein biochemistry (in-vitro translation and co-immunoprecipitations) revealed preferential physical interaction between the isolated K(V)4.2-VSD and DPP6. Significantly weaker interactions were detected between DPP6 and K(V)1.3 channels or the K(V)4.2 pore domain. More efficient gating charge movement resulting from a direct interaction between DPP6 and the K(V)4.2-VSD is unique among the known actions of K(V) channel beta-subunits. This study shows that the modular VSD of a K(V) channel can be directly regulated by transmembrane protein-protein interactions involving an extrinsic beta-subunit. Understanding these interactions may shed light on the pathophysiology of recently identified human disorders associated with mutations affecting the dpp6 gene.
辅助β亚基决定了可兴奋组织中电压门控钾离子(K(V))通道的生理特性。然而,在许多情况下,其潜在的作用机制仍知之甚少。二肽基肽酶样蛋白6(DPP6)是神经元K(V)4通道的一种特异性β亚基,它可能通过DPP6的单个跨膜片段与通道电压传感结构域(VSD)之间的相互作用来促进门控。门控电流测量与蛋白质生物化学(体外翻译和共免疫沉淀)相结合,揭示了分离出的K(V)4.2-VSD与DPP6之间存在优先的物理相互作用。在DPP6与K(V)1.3通道或K(V)4.2孔道结构域之间检测到的相互作用明显较弱。DPP6与K(V)4.2-VSD之间的直接相互作用导致更有效的门控电荷移动,这在已知的K(V)通道β亚基作用中是独特的。这项研究表明,K(V)通道的模块化VSD可通过涉及外在β亚基的跨膜蛋白-蛋白相互作用直接调节。了解这些相互作用可能有助于阐明最近发现的与影响dpp6基因的突变相关的人类疾病的病理生理学。