The Journal of Organic Chemistry · 2015 · 14 citations · 45 references
Combinatorial ChemistryMedicinal ChemistryNatural Product SynthesisBioorganic ChemistryCyclic Adp-carbocyclic-riboseBiochemistryCyclic Adp-riboseNatural SciencesOrganic Chemistry7-Deaza-cyclic Adenosine-5′-diphosphate-carbocyclic-ribose7-Bromo DerivativeHeterocycle ChemistryChemical BiologyPharmacologyAsymmetric CatalysisEnantioselective Synthesis7-Deaza Analogues
Cyclic ADP-carbocyclic-ribose (cADPcR, 3) is a biologically and chemically stable equivalent of cyclic ADP-ribose (cADPR, 1), a Ca(2+)-mobilizing second messenger. We became interested in the biological activity of the 7-deaza analogues of cADPcR, i.e., 7-deaza-cADPcR (7) and its 7-bromo derivative, i.e., 7-deaza-7-Br-cADPcR (8), because 7-deazaadenosine is an efficient bioisostere of adenosine. The synthesis of 7 and 8 required us to construct the key N1-carbocyclic-ribosyl-7-deazaadenosine structure. Therefore, we developed a general method for preparing N1-substituted 7-deazaadenosines by condensing a 2,3-disubstituted pyrrole nucleoside with amines. Using this method, we prepared the N1-carbocyclic ribosyl 7-deazaadenosine derivative 10a, from which we then synthesized the target 7-deaza-cADPcR (7) via an Ag(+)-promoted intramolecular condensation to construct the 18-membered pyrophosphate ring structure. The corresponding 7-bromo derivative 8, which was the first analogue of cADPR with a substitution at the 7-position, was similarly synthesized. Biological evaluation for Ca(2+)-mobilizing activity in the sea urchin egg homogenate system indicated that 7-deaza-cADPcR (7) and 7-deaza-7-Br-cADPcR (8) acted as a full agonist and a partial agonist, respectively.
45
CD38 is critical for social behaviour by regulating oxytocin secretion
Duo Jin, Hong-Xiang Liu, Hirokazu Hirai et al. · Nature · 2007 · 665 citations
Psychoneuroimmunology, Behavioral Sciences, Behavioral Neuroscience +6
D L Clapper, Timothy F. Walseth, P J Dargie et al. · Journal of Biological Chemistry · 1987 · 565 citations · Full text
Calcium Release, Cellular Physiology, Molecular Pharmacology +16