K2P channel TWK-40 Regulates a Rhythmic Behavior in C. elegans

Author:

Yue Zhongpu,Zhang Yongning,Yu Bin,Xu Yueqing,Chen Lili,Li Yi,Chitturi Jyothsna,Meng Jun,Hung Wesley,Mouridi Sonia ElORCID,Boulin Thomas,Zhang Cuntai,Zhen MeiORCID,Gao ShangbangORCID

Abstract

AbstractBackground potassium (K+) currents, conducted by two-pore domain K+ (K2P) channels, are critical for the stabilization of the membrane potential. The effect of K2P channels on motor rhythm remains enigmatic. We show here that the K2P TWK-40 regulates the rhythmic defecation motor program (DMP) in Caenorhabditis elegans. Disrupting TWK-40 suppresses the expulsion defects of nlp-40 and aex-2 mutants. By contrast, a gain-of-function (gf) mutant of twk-40 significantly reduces the expulsion frequency per DMP cycle. In situ whole-cell patch clamping demonstrates that TWK-40 forms an outward current that hyperpolarize the resting membrane potential of DVB neuron. In addition, TWK-40 substantially contributes to the rhythmic activity of DVB. Specifically, DVB Ca2+ oscillations exhibit obvious defects in twk-40 mutants. Expression of TWK-40(gf) in DVB recapitulates the expulsion deficiency of the twk-40(gf) mutant, and inhibits DVB Ca2+ oscillations in both wild-type and twk-40(lf) animals. Moreover, DVB innervated enteric muscles also exhibit rhythmic Ca2+ defects. Taken together, these results demonstrate that TWK-40 is an essential inhibitor of DMP, thus revealing a cellular mechanism linking K2P channels with rhythmic motor activity.

Publisher

Cold Spring Harbor Laboratory

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