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Hill coefficients, dose-response curves and allosteric mechanisms

机译:希尔系数,剂量反应曲线和变构机制

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摘要

Hill coeffcients (nH) denvea from four parameter logistic fits to dose-response curves were compared to calculated realistic reaction schemes and related to experimental data: (1) Hill coefficients may give information on the number of interacting sites but cannot distinguish between competitive, non-competitive or ortho-, iso-, or allosteric mechanisms. (2) For enzymatic dose-inhibition curves, Hill coefficients smaller than one do not indicate anticooperative binding but show that at least one ternary complex has enzymatic activity. (3) Hill coefficients different from one are proof for multiple ligand binding. The large variations of reported Hill coefficients corresponds to multiple allosteric binding, where induced conformational changes causeloss of the active conformation. Such a denaturation mechanism is in stark contrast to the desired specificity of drugs. The discussion is open.
机译:比较了从四个参数对数拟合到剂量反应曲线的希尔系数(nH)牙本质,与计算出的实际反应方案进行了比较,并与实验数据相关:(1)希尔系数可以提供有关相互作用位点数量的信息,但不能区分竞争性,非相互作用-竞争性或正向,同构或变构机制。 (2)对于酶促剂量抑制曲线,小于1的Hill系数并不表示抗合作结合,而是表明至少一种三元复合物具有酶促活性。 (3)不同于一个的希尔系数证明了多个配体结合。报告的希尔系数的大变化对应于多种变构结合,其中诱导的构象变化导致活性构象的丧失。这种变性机制与所需的药物特异性形成鲜明对比。讨论是公开的。

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