Haley B E
Biochemistry. 1975 Aug 26;14(17):3852-7. doi: 10.1021/bi00688a018.
To identify and investigate the cAMP binding sites of human red cell membranes a photoaffinity analog of cAMP, 8-azidoadenosine 3',5'-cyclic monophosphate (8-N3cAMP), has been synthesized. This analog activates cAMP-dependent protein kinase(s) in the red cell membrane. It exhibits tight, but reversible binding to the membranes which is competitive with cAMP. Photolysis of [32P]-8-N3cAMP with red cell membranes results in covalent incorporation of radioactive label onto two specific membrane proteins. This incorporation requires activating light and is reduced to background levels with addition of low levels of cAMP. Prephotolysis of 8-N3cAMP completely abolished its ability to photolabel membrane proteins. Both the reversible and photocatalyzed binding of 8-N3cAMP show saturation kinetics. The molecular weights of the two primarily labeled proteins are approximately 49,000 and 55,000. The differential effects of cAMP, ATP, and adenosine on the photocatalyzed incorporation of [32P]-8-N3cAMP onto these two proteins suggest that they have biochemically different properties. The potential usefulness of this compound for investigating various molecular aspects of cAMP action is discussed.
为了鉴定和研究人红细胞膜上的环磷酸腺苷(cAMP)结合位点,已合成了一种cAMP的光亲和类似物,即8-叠氮腺苷3',5'-环一磷酸(8-N3cAMP)。该类似物可激活红细胞膜中的cAMP依赖性蛋白激酶。它与膜紧密结合,但这种结合是可逆的,且与cAMP存在竞争性。用红细胞膜对[32P]-8-N3cAMP进行光解,会使放射性标记共价结合到两种特定的膜蛋白上。这种结合需要激活光,并且加入低水平的cAMP可使其降低至背景水平。8-N3cAMP的预光解完全消除了其对膜蛋白进行光标记的能力。8-N3cAMP的可逆结合和光催化结合均呈现饱和动力学。两种主要被标记蛋白的分子量约为49,000和55,000。cAMP、ATP和腺苷对[32P]-8-N3cAMP光催化结合到这两种蛋白上的不同影响表明,它们具有不同的生化特性。本文讨论了该化合物在研究cAMP作用的各种分子层面的潜在用途。