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PMID: 25820328 已发表 · epublish 英语

A novel PKD2L1 C-terminal domain critical for trimerization and channel function.

Scientific reports ·第 5 卷 ·2016-03-25

Zheng Wang, Hussein Shaimaa, Yang JungWoo, Huang Jun, Zhang Fan, Hernandez-Anzaldo Samuel, Fernandez-Patron Carlos, Cao Ying, Zeng Hongbo, Tang Jingfeng, Chen Xing-Zhen

摘要

As a transient receptor potential (TRP) superfamily member, polycystic kidney disease 2-like-1 (PKD2L1) is also called TRPP3 and has similar membrane topology as voltage-gated cation channels. PKD2L1 is involved in hedgehog signaling, intestinal development, and sour tasting. PKD2L1 and PKD1L3 form heterotetramers with 3:1 stoichiometry. C-terminal coiled-coil-2 (CC2) domain (G699-W743) of PKD2L1 was reported to be important for its trimerization but independent studies showed that CC2 does not affect PKD2L1 channel function. It thus remains unclear how PKD2L1 proteins oligomerize into a functional channel. By SDS-PAGE, blue native PAGE and mutagenesis we here identified a novel C-terminal domain called C1 (K575-T622) involved in stronger homotrimerization than the non-overlapping CC2, and found that the PKD2L1 N-terminus is critical for dimerization. By electrophysiology and Xenopus oocyte expression, we found that C1, but not CC2, is critical for PKD2L1 channel function. Our co-immunoprecipitation and dynamic light scattering experiments further supported involvement of C1 in trimerization. Further, C1 acted as a blocking peptide that inhibits PKD2L1 trimerization as well as PKD2L1 and PKD2L1/PKD1L3 channel function. Thus, our study identified C1 as the first PKD2L1 domain essential for both PKD2L1 trimerization and channel function, and suggest that PKD2L1 and PKD2L1/PKD1L3 channels share the PKD2L1 trimerization process.

文献信息
期刊
Scientific reports
期刊简称
Sci Rep
发表日期
2016-03-25
收录日期
2015-03-30
更新日期
2016-10-19
语言
英语
国家/地区
England
NLM ID
101563288
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