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环磷酸腺苷某些环磷酸酯衍生物对环磷酸腺苷依赖性蛋白激酶的抑制作用。

Inhibitory action of certain cyclophosphate derivatives of cAMP on cAMP-dependent protein kinases.

作者信息

de Wit R J, Hekstra D, Jastorff B, Stec W J, Baraniak J, Van Driel R, Van Haastert P J

出版信息

Eur J Biochem. 1984 Jul 16;142(2):255-60. doi: 10.1111/j.1432-1033.1984.tb08279.x.

Abstract

A series cAMP derivatives with modifications in the adenine, ribose and cyclophosphate moiety were screened for their binding affinity for the two types of cAMP-binding sites in mammalian protein kinase type 1. In addition, the activation of the kinase by these analogs was monitored. The binding data indicate that cAMP is bound to both sites in a comparable manner: the adenine appears to have no hydrogen-bond interactions with the binding sites, whereas the ribose may be bound by three hydrogen bonds involving the 2', 3' and 5' positions of cAMP. The binding data are not conclusive about the nature of the interaction with the exocyclic oxygen atoms on phosphorus, though a charge interaction seems to be absent. The cAMP molecule seems to be bound in the syn conformation. The results of activation experiments show that modifications in the adenine and ribose moiety do not affect the maximal activation level, while alteration of the two exocyclic oxygen atoms may result in a reduced maximal activation level and in one case, (Rp)-adenosine 3', 5'-monophosphorothioate [Rp-cAMPS], in total absence of activation even at concentrations at which the analog saturates both binding sites. Since occupancy of the cAMP-binding sites by this derivative apparently did not lead to activation of the enzyme, we examined whether this compound could antagonize the activation by cAMP. Indeed (Rp)-cAMPS was found to inhibit cAMP stimulated kinase activity at concentrations compatible to its binding affinity. Also with mammalian protein kinase type II (Rp)-cAMPS showed antagonistic activity, while with a cAMP-dependent protein kinase from Dictyostelium discoideum partial agonistic activity was observed. Previously a mechanism for activation of protein kinase type I was proposed involving a charge interaction between the equatorial exocyclic oxygen atom and the binding site [De Wit et. al. (1982) Eur. J. Biochem 122, 95-99]. This was based on measurements with impure preparations of (Rp)-cAMPS and the Rp and Sp isomers adenosine 3', 5'-monophosphodimethylamidate. cAMPN(CH3)2. The present work using highly purified compounds suggests the absence of a charge interaction, since the uncharged analog (Sp)-cAMPN(CH3)2 activates the kinase effectively. The data seem compatible with an activation model involving the formation of a covalent bond with phosphorus in both cAMP binding sites.

摘要

筛选了一系列在腺嘌呤、核糖和环磷酸部分有修饰的环磷酸腺苷(cAMP)衍生物,以检测它们对哺乳动物1型蛋白激酶中两种类型cAMP结合位点的结合亲和力。此外,还监测了这些类似物对激酶的激活作用。结合数据表明,cAMP以类似的方式与两个位点结合:腺嘌呤似乎与结合位点没有氢键相互作用,而核糖可能通过涉及cAMP的2'、3'和5'位置的三个氢键结合。关于与磷上的环外氧原子相互作用的性质,结合数据并不确凿,尽管似乎不存在电荷相互作用。cAMP分子似乎以顺式构象结合。激活实验结果表明,腺嘌呤和核糖部分的修饰不影响最大激活水平,而两个环外氧原子的改变可能导致最大激活水平降低,在一种情况下,(Rp)-腺苷3',5'-单磷酸硫酯[Rp-cAMPS],即使在该类似物饱和两个结合位点的浓度下也完全没有激活作用。由于该衍生物占据cAMP结合位点显然没有导致酶的激活,我们研究了该化合物是否能拮抗cAMP的激活作用。事实上,发现(Rp)-cAMPS在与其结合亲和力相当的浓度下能抑制cAMP刺激的激酶活性。对于哺乳动物II型蛋白激酶,(Rp)-cAMPS也表现出拮抗活性,而对于盘基网柄菌的一种cAMP依赖性蛋白激酶,则观察到部分激动活性。此前有人提出一种1型蛋白激酶的激活机制,涉及赤道环外氧原子与结合位点之间的电荷相互作用[De Wit等人(1982年),欧洲生物化学杂志122,95 - 99]。这是基于对不纯的(Rp)-cAMPS以及Rp和Sp异构体腺苷3',5'-单磷酸二甲酯酰胺[cAMPN(CH3)2]的测量得出的。目前使用高度纯化化合物的研究表明不存在电荷相互作用,因为不带电荷的类似物(Sp)-cAMPN(CH3)2能有效激活激酶。这些数据似乎与一个激活模型相符,该模型涉及在两个cAMP结合位点与磷形成共价键。

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