Koufen P, Rück A, Brdiczka D, Wendt S, Wallimann T, Stark G
Department of Biology, University of Konstanz, Box M638, D-78457 Konstanz, Germany.
Biochem J. 1999 Dec 1;344 Pt 2(Pt 2):413-7.
Free radicals of X-ray-induced water radiolysis, either directly or indirectly via their reaction products, reduce the activity of both dimeric cytoplasmic muscle-type creatine kinase (MM-CK) and octameric mitochondrial creatine kinase (Mi-CK) to virtually zero. Similarly values of the characteristic D(37)-dose of enzyme inactivation (dose required to reduce enzyme activity to 37%) were found for the two isoenzymes of CK under identical conditions. Octamer stability was not significantly affected within the dose range considered. However, both the dissociation of octamers into dimers by a transition-state analogue complex (TSAC), and the reassociation of the dimers into octamers, showed dose-dependent reduction. Binding of the TSAC to the active centre was found to protect the enzyme against inactivation by free radicals. No protection was observed for the radiation-induced decrease of the endogenous tryptophan fluorescence. The experimental results are in line with the following interpretation: (i) the reduction of Mi(b)-CK dimer association is due to free radical-induced modification of Trp-264, situated at the dimer/dimer interface; (ii) the active-site Trp-223 is not a prime target for free radicals and is not involved in the inactivation of the enzyme; (iii) the inhibition of TSAC-induced dissociation of Mi(b)-CK, like enzyme inactivation, is primarily due to a modification of the active-site Cys-278.
X射线诱导水辐射分解产生的自由基,无论是直接还是通过其反应产物间接作用,都会使二聚体细胞质肌型肌酸激酶(MM-CK)和八聚体线粒体肌酸激酶(Mi-CK)的活性几乎降至零。同样,在相同条件下,两种肌酸激酶同工酶的酶失活特征D(37)剂量值(将酶活性降低至37%所需的剂量)也被发现。在所考虑的剂量范围内,八聚体稳定性没有受到显著影响。然而,过渡态类似物复合物(TSAC)使八聚体解离为二聚体以及二聚体重组为八聚体的过程,均呈现出剂量依赖性降低。发现TSAC与活性中心的结合可保护酶免受自由基失活作用。对于辐射诱导的内源性色氨酸荧光降低,未观察到保护作用。实验结果符合以下解释:(i)Mi(b)-CK二聚体缔合的减少是由于位于二聚体/二聚体界面的Trp-264被自由基诱导修饰;(ii)活性位点的Trp-223不是自由基的主要作用靶点,且不参与酶的失活过程;(iii)TSAC诱导的Mi(b)-CK解离的抑制作用,与酶失活一样,主要是由于活性位点的Cys-278发生了修饰。