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Zhu, W. F.

Publications and source records attributed to Zhu, W. F..

2 recordsLinked to original sources

ABHD2 activity is not required for the non-genomic action of progesterone on human sperm

Study questionIs the hydrolase ABHD2 required for progesterone-induced Ca2+ influx via CatSper and the resulting motility responses in human sperm? Summary answerProgesterone-induced Ca2+ influx via CatSper and the resulting motility responses in human sperm do not require ABHD2 activity. What is known alreadySperm motility is tightly regulated by signalling pathways that are activated as sperm ascend the female reproductive tract, including progesterone triggering Ca2+ influx via the CatSper channel and inducing hyperactivated motility needed for fertilization. This process is thought to involve ABHD2, which may hydrolyse the endogenous CatSper inhibitor 2-arachidonoylglycerol (2-AG), thereby relieving inhibition and enabling calcium entry into the flagellum. Study design, size, durationPotent small molecule inhibitors of ABHD2 activity were synthesized, characterized, and used as tools to scrutinize the role of ABHD2 in activation of CatSper and regulation of sperm motility. Participants/materials, setting, methodsDerivatives of published ABHD2 inhibitors were optimised for in vitro potency and cellular activity and subsequently tested in human sperm motility and Ca2+ influx assays. Main results and the role of chanceProgesterone does not activate ABHD2 in vitro. In addition, inhibition of ABHD2 in human sperm has no effect on progesterone-induced Ca2+ influx through CatSper nor on basal or progesterone-induced hyperactivated motility. This demonstrates that ABHD2 activity is, in fact, not required for the non-genomic action of progesterone on human sperm. Large scale datanone Limitations, reasons for cautionWe examined the effects of inhibition of the enzymatic activity of ABHD2. We cannot exclude that ABHD2 functions as a part of a larger multiprotein complex, in which it may play a structural role independent of its hydrolase activity. Wider implications of the findingsThis study presents conclusive evidence that ABHD2 does not bind progesterone and that its hydrolase activity is not required for progesterone activation of CatSper and resulting changes in motility of human sperm. These results highlight the need for further research to elucidate the mechanism underlying the non-genomic action of progesterone on human sperm. Study funding/competing interest(s)This publication is based on research funded by the Gates Foundation. The findings and conclusions contained within are those of the authors and do not necessarily reflect positions or policies of the Gates Foundation. LT, CB, and TS were supported by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) - project numbers 329621271 (CRU326; CB, TS), and 404595355 (Research Training Group "Chemical biology of ion channels (Chembion); LT, TS). This work was funded by the German Federal Ministry of Education and Research (BMBF) within the framework of Contraception Research, grant number 01GR2501A and 01GR2502A. A.A., K.V., A.T., N.D., A.H., M.W. and R.L. are employees of Nuvisan ICB GMBH, Berlin, Germany. Nuvisan is recipient of a Gates Foundation grant. A.A is associate editor of Human Reproduction Open.

cell biology↗

Discovery of a new activator of Slack potassium channels with robust efficacy in models of histamine-independent and chronic itch

Various disorders are accompanied by histamine-independent itching, which is often resistant to the currently available therapies. In this study, we hypothesized that pharmacological activation of Slack (Kcnt1, KNa1.1), a potassium channel highly expressed in itch-sensitive sensory neurons, has therapeutic potential for the treatment of itching. Based on the Slack-activating antipsychotic drug, loxapine, we designed a series of new derivatives with improved pharmacodynamic and pharmacokinetic profiles that enabled us to validate Slack as a pharmacological target in vivo. One of these new Slack activators, compound 6, exhibited negligible dopamine D2 and D3 receptor binding, unlike loxapine. We found that compound 6 displayed potent on-target antipruritic activity in multiple mouse models of acute histamine-independent and chronic itch without motor side effects. These properties make compound 6 a lead molecule for the development of new antipruritic therapies targeting Slack.

pharmacology and toxicology↗