Mato J M, Krens F A, van Haastert P J, Konijn T M
Proc Natl Acad Sci U S A. 1977 Jun;74(6):2348-51. doi: 10.1073/pnas.74.6.2348.
Suspensions of 3':5'-cyclic AMP (cAMP)-sensitive cells of Dictyostelium discoideum responded to a cAMP pulse with increased 3':5'-cyclic GMP (cGMP) levels. Under the assay conditions used (2 x 10(8) cells per ml in 10 mM phosphate buffer, pH 6.0) cAMP (5 x 10(-8) M final concentration) increased cGMP levels from 1 pmol per 10(7) cells to 7 pmol per 10(7) cells in 10 sec and basal levels were recovered in 20-25 sec. cGMP accumulation did not occur when cells were in the cAMP-insensitive stage. cAMP-sensitive cells responded with increased cGMP levels when triggered by 5 x 10(-8) M 5'-CH(2)-cAMP or 10(-5) M adenosine-5'-methylmonophosphate (5'-AMPMe) but not after addition of 5 x 10(-8) M 3':5'-cyclic IMP (cIMP) or 5 x 10(-8) M 5'-AMP. As agonists of cAMP, 5'-CH(2)-cAMP and 5'-AMPMe have, respectively, more than 10% and 1% the chemotactic activity of cAMP, while cIMP has 0.01% the activity of cAMP and 5'-AMP is inactive up to a concentration of 10(-3) M. cAMP-mediated cGMP formation was dependent upon cAMP concentration, with a half-maximal cAMP concentration of about 10(-8) M. This cAMP concentration agrees closely with that necessary for half-maximal receptor occupation. cAMP-mediated cGMP formation was independent of the presence of extracellular Ca(2+); cell aggregation and chemotaxis were also independent of the presence of external Ca(2+). Therefore, cAMP action does not depend on stimulation of the Ca(2+) influx. cAMP was found to mediate desensitization of cAMP-dependent cGMP formation. Addition of 5 x 10(-8) M cAMP to sensitive cells induced a desensitization period that lasted 1-5 min. Desensitization was dependent on the cAMP concentration. Finally, we propose that the translation of a chemotactic signal from the cell surface to pseudopod formation in Dictyostelium involves changes in the levels of cGMP.
盘基网柄菌(Dictyostelium discoideum)的3':5'-环磷酸腺苷(cAMP)敏感细胞悬浮液对cAMP脉冲的反应是3':5'-环磷酸鸟苷(cGMP)水平升高。在所使用的测定条件下(在pH 6.0的10 mM磷酸盐缓冲液中每毫升2×10⁸个细胞),cAMP(终浓度5×10⁻⁸ M)在10秒内将cGMP水平从每10⁷个细胞1皮摩尔提高到每10⁷个细胞7皮摩尔,并且在20 - 25秒内恢复到基础水平。当细胞处于cAMP不敏感阶段时,不会发生cGMP积累。当由5×10⁻⁸ M 5'-CH₂-cAMP或10⁻⁵ M腺苷-5'-甲基单磷酸(5'-AMPMe)触发时,cAMP敏感细胞会以升高的cGMP水平做出反应,但在添加5×10⁻⁸ M 3':5'-环磷酸肌苷(cIMP)或5×10⁻⁸ M 5'-AMP后则不会。作为cAMP的激动剂,5'-CH₂-cAMP和5'-AMPMe分别具有超过cAMP趋化活性10%和1%的活性,而cIMP具有cAMP活性的0.01%,并且5'-AMP在浓度高达10⁻³ M时无活性。cAMP介导的cGMP形成取决于cAMP浓度,cAMP的半最大浓度约为10⁻⁸ M。该cAMP浓度与受体占据半最大所需浓度非常接近。cAMP介导的cGMP形成与细胞外Ca²⁺的存在无关;细胞聚集和趋化性也与外部Ca²⁺的存在无关。因此,cAMP的作用不依赖于Ca²⁺内流的刺激。发现cAMP介导cAMP依赖性cGMP形成的脱敏作用。向敏感细胞中添加5×10⁻⁸ M cAMP会诱导持续1 - 5分钟的脱敏期。脱敏作用取决于cAMP浓度。最后,我们提出在盘基网柄菌中,从细胞表面到伪足形成的趋化信号转导涉及cGMP水平的变化。