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嗜酸乳杆菌R-26的异二聚体脱氧鸟苷激酶/脱氧腺苷激酶:通过有限蛋白酶解和亲和标记对脱氧腺苷激酶亚基的异促激活作用

Heterodimeric deoxyguanosine kinase/deoxyadenosine kinase of Lactobacillus acidophilus R-26: heterotropic activation of deoxyadenosine kinase subunit implicated by limited proteolysis and affinity labeling.

作者信息

Ikeda S, Ives D H

机构信息

Department of Biochemistry, Ohio State University, Columbus 43210.

出版信息

Biochemistry. 1994 Nov 15;33(45):13373-81. doi: 10.1021/bi00249a025.

Abstract

The deoxyguanosine (dGuo) kinase/deoxyadenosine (dAdo) kinase complex of Lactobacillus has been purified to homogeneity by using a newly constructed dATP-Sepharose column as a final step (2700-fold purification). A heterodimeric structure for the complex has recently been established [Ikeda et al. (1994) Biochemistry 33, 5328-5334]. On the basis of the kinetic and structural data accumulated so far, a model for the heterotropic activation of the dAdo kinase subunit by dGuo or dGTP is proposed: (1) there is an intrinsic difference in the enzyme conformation of the two subunits, with the dAdo kinase subunit being in a constrained (closed) state and the counterpart dGuo kinase subunit being in a relaxed (open) state, as reflected in their relative Vmax values and in the presence or absence of heterotropic activation, and (2) the conformational change induced by the binding of dGuo or dGTP to the active site of the dGuo kinase subunit causes the activation of the dAdo kinase subunit through subunit--subunit interactions. These proposed mechanisms are strongly supported by the following new findings made in this work: (1) low concentrations of chaotropic agents such as guanidine--HCl were found to increase the Vmax of dAdo kinase up to 2-fold--in the same kinetic fashion, apparently, as the activation by dGuo--while showing no effect on dGuo kinase; (2) the proteolytic inactivation of dAdo kinase by trypsin is significantly slower than that of dGuo kinase, but its rate of inactivation is stimulated by dGTP to the same level as for dGuo kinase; (3) the activating effect of dGuo on dAdo kinase was abolished in the course of differential proteolytic inactivation of the dGuo kinase by trypsin in the presence of dATP; and (4) photoaffinity labeling with [8-14C]-8-azido-Ade produces a new species of kinase heterodimer in which the dAdo kinase subunit is permanently activated as a result of specific labeling of the dGuo kinase active site.

摘要

通过使用新构建的dATP - 琼脂糖柱作为最后一步,乳酸杆菌的脱氧鸟苷(dGuo)激酶/脱氧腺苷(dAdo)激酶复合物已被纯化至均一(2700倍纯化)。最近已确定该复合物为异源二聚体结构[池田等人(1994年)《生物化学》33卷,5328 - 5334页]。基于目前积累的动力学和结构数据,提出了dGuo或dGTP对dAdo激酶亚基异促激活的模型:(1)两个亚基的酶构象存在内在差异,dAdo激酶亚基处于受限(封闭)状态,而对应的dGuo激酶亚基处于松弛(开放)状态,这反映在它们的相对Vmax值以及是否存在异促激活上;(2)dGuo或dGTP与dGuo激酶亚基活性位点结合诱导的构象变化通过亚基 - 亚基相互作用导致dAdo激酶亚基的激活。这项工作中的以下新发现有力地支持了这些提出的机制:(1)发现低浓度的离液剂如盐酸胍可使dAdo激酶的Vmax增加至2倍——显然,其动力学方式与dGuo激活相同——而对dGuo激酶无影响;(2)胰蛋白酶对dAdo激酶的蛋白水解失活明显慢于dGuo激酶,但其失活速率受到dGTP的刺激,达到与dGuo激酶相同的水平;(3)在存在dATP的情况下,胰蛋白酶对dGuo激酶进行差异蛋白水解失活过程中,dGuo对dAdo激酶的激活作用被消除;(4)用[8 - 14C] - 8 - 叠氮基 - Ade进行光亲和标记产生了一种新的激酶异二聚体,其中dAdo激酶亚基由于dGuo激酶活性位点的特异性标记而被永久激活。

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