CHARACTERISTICS OF THE COMBINATION OF INHIBITORY MG2+ AND AZIDE WITH THE F1 ATPASE FROM CHLOROPLASTS
CHARACTERISTICS OF THE COMBINATION OF INHIBITORY MG2+ AND AZIDE WITH THE F1 ATPASE FROM CHLOROPLASTS
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DOI:
10.1021/bi00098a004
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发表时间:
1991-08-27
期刊:
影响因子:
2.9
通讯作者:
BOYER, PD
中科院分区:
文献类型:
--
作者:
MURATALIEV, MB;MILGROM, YM;BOYER, PD
The interactions between ADP, Mg2+, and azide that result in the inhibition of the chloroplast F1 ATPase (CF1) have been explored further. The binding of the inhibitory Mg2+ with low K(d) is shown to occur only when tightly bound ADP is present at a catalytic site. Either the tightly bound ADP forms part of the Mg2+-binding site or it induces conformational changes creating the high-affinity site for inhibitory Mg2+. Kinetic studies show that CF1 forms two catalytically inactive complexes with Mg2+. The first complex results from Mg2+ binding with a K(d) for Mg2+ dissociation of about 10-15-mu-M, followed by a slow conversion to a complex with a K(d) of about 4-mu-M. The rate-limiting step of the CF1 inactivation by Mg2+ is the initial Mg2+ binding. When medium Mg2+ is chelated with EDTA, the two complexes dissociate with half-times of about 1 and 7 min, respectively. Azide enhances the extent of Mg2+-dependent inactivation by increasing the affinity of the enzyme for Mg2+ 3-4 times and prevents the reactivation of both complexes of CF1 with ADP and Mg2+. This results from decreasing the rate of Mg2+ release; neither the rate of Mg2+ binding to CF1 nor the rate of isomerization of the first inactive complex to the more stable form is affected by azide. This suggests that the tight-binding site for the inhibitory azide requires prior binding of both ADP and Mg2+.