LTC4/CysLT2

LTC4/CysLT2 (CYSLTR2) is a cysteinyl leukotriene signaling axis that regulates inflammatory and vascular responses through a G protein-coupled receptor predominantly coupled to Gq/11-dependent signaling pathways[3][4]. CysLT2 functions as a receptor for cysteinyl leukotrienes and contributes to leukotriene-induced modulation of smooth muscle contraction, vascular permeability, and leukocyte activation, placing this pathway at the center of allergic and inflammatory biology[3]. Mechanistically, LTC4 activates CysLT2-dependent cellular responses, including calcium signaling in endothelial cells and cytokine-associated inflammatory programs in immune cells and platelets[5][6][1]. In disease settings, CysLT2 signaling has been linked to eosinophilic type 2 immunopathology, aspirin-exacerbated respiratory disease-like inflammation, dermatitis-associated itch responses, and allergic airway disorders[1][2][7]. Compared with the closely related CysLT1 receptor, CysLT2 displays distinct pharmacological and biological properties; CysLT2 can negatively regulate CysLT1-dependent pulmonary Th2 inflammation, and several classical CysLT1 antagonists, including montelukast, show little or no activity at CysLT2[3][6]. This functional divergence is important for experimental design because receptor-selective signaling may influence inflammatory outcomes independently of CysLT1 pathways[6]. For research applications, selective CysLT2 antagonists have been reported to block vascular permeability and myocardial ischemia/reperfusion injury in experimental models, providing useful tools for mechanistic studies of leukotriene biology and inflammatory disease processes[3].