DIRECT PHOTO‐AFFINITY LABELING OF CYCLIC NUCLEOTIDE BINDING PROTEINS WITH GUANOSINE‐3‘,5’‐MONOPHOSPHATE
R. S. Antonoff, James J. Ferguson, G. Idelkope
Abstract
R. S. Antonoff, James J. Ferguson, G. Idelkope
Abstract
Abstract— Radioactivity from [3H]‐guanosine‐3′,5′‐monophosphate was shown to become stably linked to proteins in testis extracts during ultraviolet irradiation. Adenosine‐3′,5′‐monophosphate competitively inhibited incorporation into these proteins. Guanosine‐3′,5′‐monophosphate had a lower affinity for binding sites than did adenosine‐3′,5′‐monophosphate. Similar peptides were photo‐labeled with [3H]‐guanosine‐3′,5′‐monophosphate and [3H]‐adenosine‐3′,5′‐monophosphate. Guanosine‐3′,5′‐monophosphate was more efficiently incorporated than was adenosine‐3′,5′‐monophosphate. Extracts from a number of tissues incorporated both cyclic nucleotides photochemically.
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Abstract— Radioactivity from [3H]‐guanosine‐3′,5′‐monophosphate was shown to become stably linked to proteins in testis extracts during ultraviolet irradiation. Adenosine‐3′,5′‐monophosphate competitively inhibited incorporation into these proteins. Guanosine‐3′,5′‐monophosphate had a lower affinity for binding sites than did adenosine‐3′,5′‐monophosphate. Similar peptides were photo‐labeled with [3H]‐guanosine‐3′,5′‐monophosphate and [3H]‐adenosine‐3′,5′‐monophosphate. Guanosine‐3′,5′‐monophosphate was more efficiently incorporated than was adenosine‐3′,5′‐monophosphate. Extracts from a number of tissues incorporated both cyclic nucleotides photochemically.
Key concepts: Guanosine, Guanosine monophosphate, Nucleotide, Adenosine, Adenosine monophosphate, Cyclic guanosine monophosphate, Biochemistry, Chemistry