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Chronic cough relief by allosteric modulation of P2X3 without taste disturbance.

Chang-Run GuoZhong-Zhe ZhangXing ZhouMeng-Yang SunTian-Tian LiYun-Tao LeiYu-Hao GaoQing-Quan LiChen-Xi YueYu GaoYi-Yu LinCui-Yun HaoChang-Zhu LiPeng CaoMichael Xi ZhuMing-Qiang RongWen-Hui WangYe Yu
Published in: Nature communications (2023)
P2X receptors are cation channels that sense extracellular ATP. Many therapeutic candidates targeting P2X receptors have begun clinical trials or acquired approval for the treatment of refractory chronic cough (RCC) and other disorders. However, the present negative allosteric modulation of P2X receptors is primarily limited to the central pocket or the site below the left flipper domain. Here, we uncover a mechanism of allosteric regulation of P2X3 in the inner pocket of the head domain (IP-HD), and show that the antitussive effects of quercetin and PSFL2915 (our nM-affinity P2X3 inhibitor optimized based on quercetin) on male mice and guinea pigs were achieved by preventing allosteric changes of IP-HD in P2X3. While being therapeutically comparable to the newly licensed P2X3 RCC drug gefapixant, quercetin and PSFL2915 do not have an adverse effect on taste as gefapixant does. Thus, allosteric modulation of P2X3 via IP-HD may be a druggable strategy to alleviate RCC.
Keyphrases
  • small molecule
  • clinical trial
  • renal cell carcinoma
  • randomized controlled trial
  • photodynamic therapy
  • adverse drug
  • open label
  • structural basis