High calcium transport by Polycystin-2 (TRPP2) induces channel clustering and oscillatory currents

被引:1
|
作者
Velazquez, Irina F. [1 ,3 ]
Cantiello, Horacio F. [1 ]
Cantero, Maria del Rocio [1 ,2 ]
机构
[1] CONICET UNSE, Inst Multidisciplinario Salud Tecnol & Desarrollo, Lab Canales Ion, Santiago Del Estero, Argentina
[2] IMSaTeD CONICET UNSE, Labs Cent, Ruta Nacl 9,Km 1125 S-N, RA-1125 Santiago Del Estero, Argentina
[3] Inst Divers & Evoluc Austral IDEAus CONICET, Bv Almirante Brown 2915, RA-2915 Puerto Madryn, Chubut, Argentina
关键词
Polycystin-2; Calcium; QuB; Oscillations; PRIMARY CILIA; CA2+;
D O I
10.1016/j.bbrc.2023.03.067
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The regulation by Ca2+ of Ca2+-permeable ion channels represents an important mechanism in the control of cell function. Polycystin-2 (PC2, TRPP2), a member of the TRP channel family (Transient Potential Receptor), is a Ca2+ permeable non-selective cation channel. Previous studies from our laboratory demonstrated that physiological concentrations of Ca2+ do not regulate in vitro translated PC2 (PC(2i)v) channel activity. However, the issue as to PC20s Ca2+ permeability and regulation remain ill-defined, in particular because Ca2+ transport is usually observed in the presence of other ionic gradients. In this study, we assessed Ca2+ transport by PC2iv in a lipid bilayer reconstitution system in a high Ca2+ gradient (CaCl2 100 mM cis, CaCl2 10 mM trans) in the presence of either 3:7 or 7:3 1-palmitoyl-2-oleoyl-choline and ethanolamine lipid mixtures. Reconstituted PC2(iv) showed spontaneous Ca2+ currents in both lipid mixtures, with a maximum conductance of 63 +/- 13 pS (n = 19) and 105 pS +/- 9.8 (n = 9), respectively. In both cases, we best fitted the experimental data with the Goldman-Hodgkin-Katz equation, observing a reversal potential (V-rev similar to 27 mV) consistent with strict Ca2+ selectivity. The R742X mutated PC2 (PC2(R742X)), lacking the carboxy terminal domain of the channel showed no differences with wild type PC2. Interestingly, we also observed the onset of spontaneous Ca2+ current oscillations whenever PC2-containing samples were reconstituted in the 3:7, but not 7:3 POPC:POPE lipid mixture. The amplitude and frequency of the ionic oscillations were highly dependent on the applied voltage, the imposed Ca2+ gradient, and the presence of high Ca2+, which induced PC2 channel clustering as observed by atomic force microscopy (AFM). We also used the QuB suite to kinetically model the PC2 channel Ca2+ oscillations based on the presence of subconductance states in the channel. The encompassed evidence supports a high Ca2+ permeability by PC2, and a novel oscillatory mechanism dependent on the presence of Ca2+ and phospholipids that provides the first evidence for the relation between stochasticity and deterministic processes mediated by ion channels. (c) 2023 Elsevier Inc. All rights reserved.
引用
收藏
页码:50 / 57
页数:8
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