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cAMP-specific 3',5'-cyclic phosphodiesterase 10A (PDE10A) is a dual-substrate enzyme that hydrolyzes both cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP), with a significantly higher affinity for cAMP (UniProt: Q9Y233). It is uniquely characterized by its highly localized expression within the medium spiny neurons of the striatum, positioning it as a master regulator of basal ganglia circuitry (PubMed: 21835188). By modulating the levels of these second messengers, PDE10A influences both the direct and indirect striatal pathways, which are essential for motor coordination and executive function (NCBI Gene: 10846). In the context of schizophrenia, PDE10A inhibitors are investigated for their ability to enhance dopaminergic signaling and improve cognitive symptoms (PubMed: 25159930). Furthermore, PDE10A levels are known to decline early in Huntington's disease, making the enzyme a valuable biomarker for disease progression and a target for potential neuroprotective therapies (PubMed: 24991464). While several selective inhibitors like PF-02545920 and TAK-063 have been evaluated in clinical trials, achieving the desired efficacy profile remains a significant challenge in drug development (PubChem: CID 10198500).
Selective inhibition of the PDE10A enzyme to prevent the hydrolysis of cAMP and cGMP, thereby increasing their intracellular concentrations and modulating neuronal signaling in the striatum (PubMed: 21835188).
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