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N J Cusack

Publications and source records attributed to N J Cusack.

4 recordsLinked to original sources

Effects of D- and L- enantiomers of adenosine, AMP and ADP and their 2-chloro- and 2-azido- analogues on human platelets.

Aggregation of human platelets by ADP and the inhibition of this effect by adenosine are apparently mediated by different receptors. One of the criteria for receptors is that they show stereospecificity for their ligands. We have synthesized L-enantiomers of D-adenosine, AMP and ADP, together with their corresponding photolysable 2-azido analogues so that platelet receptors could be tested for stereospecificity. All of the L-enantiomers were completely inactive as aggregators or inhibitors of platelet function. None of the L-enantiomers changed levels of platelet cAMP. 2-Azido-L-adenosine, AMP and ADP are proposed as useful controls in photoaffinity experiments for non-specific labelling.

Adenosine

Relaxation of isolated taenia coli of guinea-pig by enantiomers of 2-azido analogues of adenosine and adenine nucleotides.

1 2-Azido photoaffinity analogues of adenosine 5'triphosphate (ATP), adenosine 5'-diphosphate (ADP), adenosine 5'-monophosphate (AMP), and adenosine have been synthesized and tested on guinea-pig taenia coli. 2 2-Azido-ATP and 2-azido-ADP were approximately 20 times more potent than ATP as relaxants of taenia coli, and required prolonged washout times before recovery of the muscle. 3 2-Azido-AMP and 2-azidoadenosine were 2 to 12 times more potent than ATP, but took much longer (up to 100 s) to reach maximal relaxation. This behaviour is different from that of AMP and adenosine which were much less potent than ATP. 4 L-Enantiomers of adenosine and adenine nucleotides were also tested. L-ATP and L-ADP were 3 to 6 times less potent than ATP and ADP, and L-AMP and L-adenosine were inactive. 2-Azido-L-ATP and 2-azido-L-ADP were approximately 120 times less potent than 2-Azido-ATP and 6 times less potent than ATP as relaxants of taenia coli. 2-Azido-L-AMP and 2-azidio-L-adenosine were almost inactive. 5 2-Azido derivatives are photolysed by u.v. irradiation to reactive intermediates. 2-Azido-ATP and 2-azidoadenosine might be suitable photoaffinity ligands for labelling putative P2 and P1 purine receptors respectively. 2-Azido-L-ATP and 2-azido-L-adenosine could be useful controls for nonspecific labelling.

Adenine Nucleotides