Department of Pharmacology, Oxford University, Oxford OX1 3QT, UK.
J Biol Chem. 2011 Oct 28;286(43):37058-62. doi: 10.1074/jbc.C111.289835. Epub 2011 Sep 8.
Two-pore channels (TPCs) have been recently identified as NAADP-regulated Ca(2+) release channels, which are localized on the endolysosomal system. TPCs have a 12-transmembrane domain (TMD) structure and are evolutionary intermediates between the 24-TMD α-subunits of Na(+) or Ca(2+) channels and the transient receptor potential channel superfamily, which have six TMDs in a single subunit and form tetramers with 24 TMDs as active channels. Based on this relationship, it is predicted that TPCs dimerize to form functional channels, but the dimerization of human TPCs has so far not been studied. Using co-immunoprecipitation studies and a mass spectroscopic analysis of the immunocomplex, we show the presence of homo- and heteromeric complexes for human TPC1 and TPC2. Despite their largely distinct localization, we identified a discrete number of endosomes that coexpressed TPC1 and TPC2. Homo- and heteromerization were confirmed by a FRET study, showing that both proteins interacted in a rotational (N- to C-terminal/head-to-tail) symmetry. This is the first report describing the presence of homomultimeric TPC1 channels and the first study showing that TPCs are capable of forming heteromers.
双孔通道 (TPCs) 最近被鉴定为 NAADP 调节的 Ca(2+) 释放通道,它们定位于内溶酶体系统。TPCs 具有 12 个跨膜域 (TMD) 结构,是 24-TMD Na(+) 或 Ca(2+) 通道的 α 亚基和瞬时受体电位通道超家族之间的进化中间体,后者在单个亚基中有 6 个 TMD,并形成具有 24 个 TMD 的四聚体作为活性通道。基于这种关系,可以预测 TPCs 二聚化形成功能性通道,但迄今为止尚未研究过人类 TPCs 的二聚化。通过共免疫沉淀研究和免疫复合物的质谱分析,我们显示了人 TPC1 和 TPC2 的同源和异源复合物的存在。尽管它们的定位有很大的不同,但我们鉴定出了少数表达 TPC1 和 TPC2 的内体。通过 FRET 研究证实了同源和异源二聚化,表明这两种蛋白质以旋转(N 到 C 端/头到尾)对称相互作用。这是首次报道描述同源多聚体 TPC1 通道的存在,也是首次研究表明 TPCs 能够形成异源二聚体。