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15摄氏度时胰岛素与大鼠白色脂肪细胞的平衡结合

Equilibrium binding of insulin to rat white fat cells at 15 degrees C.

作者信息

Lipkin E W, Teller D C, de Haën C

出版信息

J Biol Chem. 1986 Feb 5;261(4):1694-701.

PMID:3511047
Abstract

Equilibrium binding of insulin to isolated rat epididymal fat cells was investigated. A temperature of 15 degrees C was chosen for the study to minimize lysosomal degradation of insulin. Indeed, medium insulin lost only 1% of its precipitability in trichloroacetic acid during the 4-h incubation required to approach equilibrium. Binding was measured by a method that did not perturb the equilibrium of the system. A new formalism for analyzing binding data in general was introduced. A correction for trapping of insulin in the interstitial space of cell pellets was both necessary and sufficient to derive specific binding data from raw observations. Thus, so-called "nonspecific binding" was unmasked as a misnomer, and the expression "correction for trapping" was proposed as a substitute. Equations for one and two independent classes of binding sites were fit to the data by the method of maximum likelihood, and the best fit was selected based on Akaike's information criterion, as adapted for a constant fractional error. More than 99.7% of the binding sites were found to be describable by a simple binding isotherm with Kd,app = 8.8 multiplied by over divided by 1.3 nM. Less than 0.3% sites had a higher affinity (Kd approximately equal to 8 multiplied by over divided by 3 pM). There were 99,000 x/divided by 1.6 binding sites/cell. These equilibrium parameters are in agreement with values derived from a kinetic analysis, presented in the subsequent paper (Lipkin, E. W., Teller, D. C., and de Haën, C. (1986) J. Biol. Chem. 260, 1702-1711).

摘要

研究了胰岛素与分离的大鼠附睾脂肪细胞的平衡结合。选择15摄氏度的温度进行研究,以尽量减少胰岛素的溶酶体降解。实际上,在达到平衡所需的4小时孵育过程中,培养基中的胰岛素在三氯乙酸中的沉淀能力仅损失了1%。通过一种不会干扰系统平衡的方法测量结合。引入了一种用于一般分析结合数据的新形式。对细胞沉淀间质空间中胰岛素捕获的校正对于从原始观察中得出特异性结合数据既是必要的也是充分的。因此,所谓的“非特异性结合”被证明是一个不恰当的名称,并提出了“捕获校正”这一表述作为替代。通过最大似然法将一类和两类独立结合位点的方程拟合到数据中,并根据适用于恒定分数误差的赤池信息准则选择最佳拟合。发现超过99.7%的结合位点可用简单的结合等温线描述,Kd,app = 8.8 ± 1.3 nM。亲和力较高的位点(Kd约为8 ± 3 pM)不到0.3%。每个细胞有99,000 ± 1,600个结合位点。这些平衡参数与后续论文(Lipkin, E. W., Teller, D. C., and de Haën, C. (1986) J. Biol. Chem. 260, 1702 - 1711)中动力学分析得出的值一致。

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