首页> 美国卫生研究院文献>The Journal of Neuroscience >TRIP8b Regulates HCN1 Channel Trafficking and Gating through Two Distinct C-Terminal Interaction Sites
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TRIP8b Regulates HCN1 Channel Trafficking and Gating through Two Distinct C-Terminal Interaction Sites

机译:TRIP8b通过两个不同的C终端交互站点调节HCN1通道的流量和门控

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摘要

Hyperpolarization-activated cyclic nucleotide-regulated (HCN) channels in the brain associate with their auxiliary subunit TRIP8b (also known as PEX5R), a cytoplasmic protein expressed as a family of alternatively spliced isoforms. Recent in vitro and in vivo studies have shown that association of TRIP8b with HCN subunits both inhibits channel opening and alters channel membrane trafficking, with some splice variants increasing and others decreasing channel surface expression. Here, we address the structural bases of the regulatory interactions between mouse TRIP8b and HCN1. We find that HCN1 and TRIP8b interact at two distinct sites: an upstream site where the C-linker/cyclic nucleotide-binding domain of HCN1 interacts with an 80 aa domain in the conserved central core of TRIP8b; and a downstream site where the C-terminal SNL (Ser-Asn-Leu) tripeptide of the channel interacts with the tetratricopeptide repeat domain of TRIP8b. These two interaction sites play distinct functional roles in the effects of TRIP8b on HCN1 trafficking and gating. Binding at the upstream site is both necessary and sufficient for TRIP8b to inhibit channel opening. It is also sufficient to mediate the trafficking effects of those TRIP8b isoforms that downregulate channel surface expression, in combination with the trafficking motifs present in the N-terminal region of TRIP8b. In contrast, binding at the downstream interaction site serves to stabilize the C-terminal domain of TRIP8b, allowing for optimal interaction between HCN1 and TRIP8b as well as for proper assembly of the molecular complexes that mediate the effects of TRIP8b on HCN1 channel trafficking.
机译:大脑中的超极化激活的环状核苷酸调节(HCN)通道与其辅助亚基TRIP8b(也称为PEX5R)相关联,TRIP8b是一种胞质蛋白,表达为交替剪接的同工型家族。最近的体外和体内研究表明,TRIP8b与HCN亚基的缔合既抑制通道开放,又改变通道膜运输,某些剪接变体增加而另一些剪接变体减少通道表面表达。在这里,我们解决了小鼠TRIP8b和HCN1之间的监管互动的结构基础。我们发现,HCN1和TRIP8b在两个不同的位点相互作用:一个上游位点,其中HCN1的C-接头/环核苷酸结合结构域与TRIP8b保守中心核中的80aa结构域相互作用;通道的C末端SNL(Ser-Asn-Leu)三肽与TRIP8b的四三肽重复域相互作用的下游位点。这两个相互作用位点在TRIP8b对HCN1转运和门控的影响中起着不同的功能作用。上游位点的结合对于TRIP8b抑制通道开放既必要又足够。介导下调通道表面表达的那些TRIP8b同工型与存在于TRIP8b的N-末端区域的运输基序结合,也足以介导运输效应。相反,在下游相互作用位点的结合可稳定TRIP8b的C端结构域,从而实现HCN1和TRIP8b之间的最佳相互作用,以及介导TRIP8b对HCN1通道运输的影响的分子复合物的正确组装。

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