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人中性粒细胞上趋化因子F-甲硫氨酰-亮氨酰-苯丙氨酸的异源受体群体。pH值和温度的影响。

Heterologous receptor population for a chemotactic factor F-Met-Leu-Phe on the human neutrophil. Effect of pH and temperature.

作者信息

Mehta J, Spilberg I

出版信息

Inflammation. 1983 Sep;7(3):301-9. doi: 10.1007/BF00917267.

Abstract

Association kinetics of a chemotactic factor [3H]FMLP to its specific receptors on human neutrophils and the modulation of kinetic constants by pH and temperature were studied. The half-time for [3H]FMLP association to its specific receptors as calculated by a least-square fit equation was 27 min at 4 degrees C, 13 min at 24 degrees C, and 5 min at 37 degrees C. The Scatchard plot of [3H]FMLP binding to its specific receptors was found to be nonlinear, suggesting a heterogeneity of [3H]FMLP receptors and/or functional negative cooperativity. The computer analysis of the data showed two populations of FMLP receptors on human neutrophils with Kd (dissociation constant) values of 0.17 +/- SD 0.1 nM and 0.94 +/- SD 0.1 nM at 4 degrees C, and 0.17 +/- SD 0.02 nM and 1.1 +/- SD 0.2 nM at 37 degrees C. The optimum [3H]FMLP binding at 37 degrees C was observed at pH 7.5. There was essentially no difference in Kd values at pH 6.0, 7.5, or 8.5. Our results suggest the presence of two populations of [3H]FMLP receptors on human neutrophils in support of previous observations of other investigators. Our data also demonstrate that association constants between [3H]FMLP and its specific receptors on human neutrophils are not affected by changes in pH or temperature; maximal binding, however, is dependent on pH.

摘要

研究了趋化因子[3H]FMLP与其在人中性粒细胞上的特异性受体的结合动力学,以及pH值和温度对动力学常数的调节作用。通过最小二乘法拟合方程计算得出,[3H]FMLP与其特异性受体结合的半衰期在4℃时为27分钟,24℃时为13分钟,37℃时为5分钟。发现[3H]FMLP与其特异性受体结合的Scatchard图呈非线性,提示[3H]FMLP受体存在异质性和/或功能性负协同性。对数据的计算机分析显示,人中性粒细胞上存在两类FMLP受体,在4℃时解离常数(Kd)值分别为0.17±标准差0.1 nM和0.94±标准差0.1 nM,在37℃时分别为0.17±标准差0.02 nM和1.1±标准差0.2 nM。在37℃时,pH 7.5时观察到[3H]FMLP的最佳结合。在pH 6.0、7.5或8.5时,Kd值基本没有差异。我们的结果表明,人中性粒细胞上存在两类[3H]FMLP受体,支持了其他研究者先前的观察结果。我们的数据还表明,[3H]FMLP与人中性粒细胞上其特异性受体之间的结合常数不受pH值或温度变化的影响;然而,最大结合量取决于pH值。

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