甘油磷脂
磷脂酸
纳米技术
自然(考古学)
化学
计算机科学
材料科学
生物化学
生物
磷脂
古生物学
膜
作者
Antoine Schlichter,Alexander Wolf,Thomas Ferrand,Aurelien Cocq,Lina Riachy,Steven Vertueux,Brice Beauvais,Marine Courvalet,Patrick Henry,Émeline Tanguy,Leonardo A. Gonzales,Rémy Ferlet,Fanny Laguerre,Charles Decraene,Alexia Pellissier,Muriel Sebban,Cyrille Sabot,Lydie Jeandel,Sarah Cianférani,Jean‐Marc Strub
标识
DOI:10.1002/anie.202510412
摘要
Glycerophospholipids (GPLs) play important roles in cellular compartmentalization and signaling. Among them, phosphatidic acids (PA) exist as many distinct species depending on acyl chain composition, each one potentially displaying unique signaling function. Although the signaling functions of PA have already been demonstrated in multiple cellular processes, the specific roles of individual PA species remain obscure due to a lack of appropriate tools. Indeed, current synthetic PA analogues fail to preserve all the functions of natural PA. To circumvent these limitations, we developed a novel synthetic approach to produce PA analogues without compromising structural integrity of acyl chains. Moreover, addition of a clickable moiety allowed flexible grafting of different molecules to PA analogues for various biological applications. Hence, this innovation also provides powerful tools to investigate specific biological activities of individual PA species, with potential applications in unraveling complex GPL‐mediated signaling pathways.
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