Characterization of a Fatty Acid Amide Hydrolase (FAAH) in Hirudo Verbana
Basic science published in Neurochem Res (2024)
Abstract
The endocannabinoid system plays a critical role in modulating both peripheral and central nervous system function. Despite being present throughout the animal kingdom, there has been relatively little investigation of the endocannabinoid system beyond traditional animal models. In this study, we report on the identification and characterization of a putative fatty acid amide hydrolase (FAAH) in the medicinal leech, Hirudo verbana. FAAH is the primary enzyme responsible for metabolizing the endocannabinoid signaling molecule arachidonoyl ethanolamide (anandamide or AEA) and therefore plays a critical role in regulating AEA levels in the nervous system. mRNA encoding Hirudo FAAH (HirFAAH) is expressed in the leech central nervous system (CNS) and sequence analysis suggests that this is an orthologue of FAAH-2 observed in vertebrates. Functionally, HirFAAH has serine hydrolase activity based on activity-based protein profiling (ABPP) studies using the fluorophosphonate probe TAMRA-FP. HirFAAH also hydrolyzes arachidonyl 7-amino, 4-methyl coumarin amide (AAMCA), a substrate specific to FAAH. Hydrolase activity during both the ABPP and AAMCA assays was eliminated by a mutation at a conserved catalytic serine. Activity was also blocked by the known FAAH inhibitor, URB597. Treatment of Hirudo ganglia with URB597 potentiated synapses made by the pressure-sensitive mechanosensory neuron (P cell), mimicking the effects of exogenously applied AEA. The Hirudo CNS has been a useful system in which to study properties of endocannabinoid modulation of nociception relevant to vertebrates. Therefore, this characterization of HirFAAH is an important contribution to comparative studies of the endocannabinoid system.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Summary
Identifies and characterizes a FAAH-2 orthologue (HirFAAH) in Hirudo verbana central nervous system that hydrolyzes anandamide and is blocked by URB597, establishing endocannabinoid metabolism in medicinal leeches.
Why This Matters for Hirudotherapy
This study reports the identification and characterization of a putative fatty acid amide hydrolase (FAAH) in the medicinal leech Hirudo verbana, the primary enzyme responsible for metabolizing the endocannabinoid anandamide (AEA). The authors demonstrate that HirFAAH is expressed in the leech CNS, exhibits serine hydrolase activity confirmed by activity-based protein profiling and substrate assays, and that pharmacological inhibition with URB597 potentiated synaptic signaling in pressure-sensitive mechanosensory neurons, mimicking exogenous AEA effects. The study does not mention hirudotherapy, therapeutic applications of leeches, or their secretome. Relevance to ASH's domain is indirect; this is purely basic comparative neuroscience investigating endocannabinoid signaling in Hirudo verbana.
Citation
Characterization of a Fatty Acid Amide Hydrolase (FAAH) in Hirudo Verbana.
Kabeiseman E et al. · Neurochemical research, 2024
Added to ASH library: May 27, 2026 · Site last updated: June 18, 2026