King A C, Frazier W A
J Biol Chem. 1979 Aug 10;254(15):7168-76.
The cAMP receptor on the surface of aggregation competent Dictyostelium discoideum cells specifically binds [3H]cAMP in an oscillatory manner with a periodicity of 2 min. The oscillatory cAMP-binding component is developmentallly regulated and has the nucleotide specificity expected for recognition of chemotactic signals. The concentration dependence of the peak amplitudes of cAMP binding exhibit an apparent threshold at 10(-8) M cAMP. The threshold concentration for cAMP binding that we measure is consistent with the concentration dependence of signal relay (cAMP secretion) and the chemotactic response. The kinetic data of binding and dissociation are very rapid, consistent with the time course of oscillations in receptor capacity (affinity). Specific binding oscillations are destroyed by heat or chymotrypsin but are insensitive to trypsin or glycosidase. A plasma membrane localization of receptor is supported by enrichment of cAMP binding in a plasma membrane preparation from differentiated cells. Receptor oscillations with a 2-min period are preserved in the membrane preparations, and the peak amplitudes are increased about 10-fold consistent with the enrichment of other plasma membrane markers. The alternating change in the receptor's binding capacity for cAMP may be the basis of the relay refractory period as well as the primary oscillator involved in the generation of postreceptor events such as stimulation of adenylate cyclase, cAMP secretion, and cellular movement, all of which have been previously shown to oscillate.
聚集能力成熟的盘基网柄菌细胞表面的环磷酸腺苷(cAMP)受体以2分钟的周期,以振荡方式特异性结合[3H]cAMP。振荡性cAMP结合成分受发育调控,具有识别趋化信号所预期的核苷酸特异性。cAMP结合峰值幅度的浓度依赖性在10^(-8)M cAMP时表现出明显的阈值。我们测量的cAMP结合阈值浓度与信号转导(cAMP分泌)和趋化反应的浓度依赖性一致。结合和解离的动力学数据非常迅速,与受体容量(亲和力)振荡的时间进程一致。特异性结合振荡可被加热或胰凝乳蛋白酶破坏,但对胰蛋白酶或糖苷酶不敏感。分化细胞的质膜制备物中cAMP结合的富集支持了受体的质膜定位。膜制备物中保留了周期为2分钟的受体振荡,且峰值幅度增加了约10倍,这与其他质膜标记物的富集一致。受体对cAMP结合能力的交替变化可能是中继不应期的基础,也是参与产生受体后事件(如腺苷酸环化酶刺激、cAMP分泌和细胞运动)的主要振荡器的基础,所有这些事件此前已被证明会振荡。