Ahmed K, Goueli S A, Williams-Ashman H G
Adv Enzyme Regul. 1986;25:401-21. doi: 10.1016/0065-2571(86)90026-9.
An overview of the work on polyamine effects on certain protein kinase reactions is presented. In general, the reactions catalyzed by the messenger-independent protein kinases but not by cyclic nucleotide-, Ca2+-, Ca2+-calmodulin-, and Ca2+-anionic lipid-dependent protein kinases, are markedly enhanced by polyamines. The extent of this stimulation depends critically on the nature of the protein substrate and several other factors. A variety of other polycationic compounds including Co3+(NH3)6, polybrene, and certain aminoglycoside antibiotics exert polyamine-like effects in the same reactions. These observations suggest that the charge properties rather than any strict chemical structure play a role in the action of polyamines. Available data do not support a specific "cofactor" function of these amines for the protein kinases involved in the polyamine-stimulable reactions. It appears that the action of polyamines is mediated via their influence on the conformational status of the protein substrates thereby altering the availability of the phosphorylatable sites to the active sites on the protein kinases. Although this notion is supported by several lines of evidence, at present a role of the influence of polyamines on both the substrate and enzyme cannot be ruled out. Possible physiological relevance of the polyamine-stimulable protein kinase reactions observed in the in vitro experiments remains problematic in the absence of precise knowledge on the "effective" or free concentrations of intracellular polyamines.
本文综述了多胺对某些蛋白激酶反应的影响。一般来说,多胺能显著增强由不依赖信使的蛋白激酶催化的反应,但对由环核苷酸、Ca2+、Ca2+-钙调蛋白和Ca2+-阴离子脂质依赖性蛋白激酶催化的反应则无增强作用。这种刺激的程度主要取决于蛋白质底物的性质和其他几个因素。包括Co3+(NH3)6、聚凝胺和某些氨基糖苷类抗生素在内的多种其他聚阳离子化合物在相同反应中发挥类似多胺的作用。这些观察结果表明,电荷性质而非任何严格的化学结构在多胺的作用中起作用。现有数据不支持这些胺对参与多胺刺激反应的蛋白激酶具有特定的“辅助因子”功能。似乎多胺的作用是通过它们对蛋白质底物构象状态的影响来介导的,从而改变可磷酸化位点对蛋白激酶活性位点的可及性。虽然这一观点得到了几条证据的支持,但目前不能排除多胺对底物和酶的影响所起的作用。在缺乏关于细胞内多胺“有效”或游离浓度的确切知识的情况下,体外实验中观察到的多胺刺激的蛋白激酶反应的可能生理相关性仍然存在问题。