Structural basis for Ca<sup>2+</sup> activation of the heteromeric PKD1L3/PKD2L1 channel.

Su, Qiang; Chen, Mengying; Wang, Yan; Li, Bin; Jing, Dan; Zhan, Xiechao; Yu, Yong; Shi, Yigong · Nat Commun · 2021

basic_science · Level V

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Abstract

The heteromeric complex between PKD1L3, a member of the polycystic kidney disease (PKD) protein family, and PKD2L1, also known as TRPP2 or TRPP3, has been a prototype for mechanistic characterization of heterotetrametric TRP-like channels. Here we show that a truncated PKD1L3/PKD2L1 complex with the C-terminal TRP-fold fragment of PKD1L3 retains both Ca<sup>2+</sup> and acid-induced channel activities. Cryo-EM structures of this core heterocomplex with or without supplemented Ca<sup>2+</sup> were determined at resolutions of 3.1 Å and 3.4 Å, respectively. The heterotetramer, with a pseudo-symmetric TRP architecture of 1:3 stoichiometry, has an asymmetric selectivity filter (SF) guarded by Lys2069 from PKD1L3 and Asp523 from the three PKD2L1 subunits. Ca<sup>2+</sup>-entrance to the SF vestibule is accompanied by a swing motion of Lys2069 on PKD1L3. The S6 of PKD1L3 is pushed inward by the S4-S5 linker of the nearby PKD2L1 (PKD2L1-III), resulting in an elongated intracellular gate which seals the pore domain. Comparison of the apo and Ca<sup>2+</sup>-loaded complexes unveils an unprecedented Ca<sup>2+</sup> binding site in the extracellular cleft of the voltage-sensing domain (VSD) of PKD2L1-III, but not the other three VSDs. Structure-guided mutagenic studies support this unconventional site to be responsible for Ca<sup>2+</sup>-induced channel activation through an allosteric mechanism.

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