Chemical probes to potently and selectively inhibit endocannabinoid cellular reuptake.

نویسندگان

  • Andrea Chicca
  • Simon Nicolussi
  • Ruben Bartholomäus
  • Martina Blunder
  • Alejandro Aparisi Rey
  • Vanessa Petrucci
  • Ines Del Carmen Reynoso-Moreno
  • Juan Manuel Viveros-Paredes
  • Marianela Dalghi Gens
  • Beat Lutz
  • Helgi B Schiöth
  • Michael Soeberdt
  • Christoph Abels
  • Roch-Philippe Charles
  • Karl-Heinz Altmann
  • Jürg Gertsch
چکیده

The extracellular effects of the endocannabinoids anandamide and 2-arachidonoyl glycerol are terminated by enzymatic hydrolysis after crossing cellular membranes by facilitated diffusion. The lack of potent and selective inhibitors for endocannabinoid transport has prevented the molecular characterization of this process, thus hindering its biochemical investigation and pharmacological exploitation. Here, we report the design, chemical synthesis, and biological profiling of natural product-derived N-substituted 2,4-dodecadienamides as a selective endocannabinoid uptake inhibitor. The highly potent (IC50 = 10 nM) inhibitor N-(3,4-dimethoxyphenyl)ethyl amide (WOBE437) exerted pronounced cannabinoid receptor-dependent anxiolytic, antiinflammatory, and analgesic effects in mice by increasing endocannabinoid levels. A tailored WOBE437-derived diazirine-containing photoaffinity probe (RX-055) irreversibly blocked membrane transport of both endocannabinoids, providing mechanistic insights into this complex process. Moreover, RX-055 exerted site-specific anxiolytic effects on in situ photoactivation in the brain. This study describes suitable inhibitors to target endocannabinoid membrane trafficking and uncovers an alternative endocannabinoid pharmacology.

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عنوان ژورنال:
  • Proceedings of the National Academy of Sciences of the United States of America

دوره 114 25  شماره 

صفحات  -

تاریخ انتشار 2017