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嗜热芽孢杆菌PS3的F1-ATP酶的α3(βY341W)3γ亚复合物在单个催化位点水解MgATP时无法解离ADP,而当三个催化位点被MgATP饱和时达到最大速度。

The alpha 3(beta Y341W)3 gamma subcomplex of the F1-ATPase from the thermophilic Bacillus PS3 fails to dissociate ADP when MgATP is hydrolyzed at a single catalytic site and attains maximal velocity when three catalytic sites are saturated with MgATP.

作者信息

Dou C, Fortes P A, Allison W S

机构信息

Department of Chemistry, University of California at San Diego, La Jolla 92093-0601, USA.

出版信息

Biochemistry. 1998 Nov 24;37(47):16757-64. doi: 10.1021/bi981717q.

Abstract

The hydrolytic properties of the alpha3beta3gamma and mutant alpha3(betaY341W)3gamma subcomplexes of the TF1-ATPase have been compared. ATPase activity of the mutant is less sensitive to turnover-dependent inhibition by azide, less suppressed by increasing concentrations of Mg2+ during assay, and less stimulated by lauryl dimethylamine oxide (LDAO). Therefore, it has much lower propensity than wild-type to entrap inhibitory MgADP in a catalytic site during turnover. The fluorescence of the introduced tryptophans in the alpha3(betaY341W)3gamma subcomplex is completely quenched when catalytic sites are saturated with ATP or ADP with or without Mg2+ present. As reported for the betaY331W mutant of Escherichia coli F1 (Weber, J., Wilke-Mounts, S., Lee, R. S.-F., Grell, E., Senior, A. E. (1993) J. Biol. Chem. 268, 20126-20133), this provides a direct probe of nucleotide binding to catalytic sites. Addition of stoichiometric MgATP to the mutant subcomplex quenched one-third the tryptophan fluorescence which did not recover after 60 min. This was caused by entrapment of MgADP in a single catalytic site. Titration of catalytic sites of the alpha3(betaY341W)3gamma subcomplex with MgADP or MgATP revealed Kd's of < 50 nM, about 0.25 microM and about 35 microM. Titrations were not affected by azide, whereas LDAO lowered the affinities of catalytic sites 2 and 3 for MgADP by 5-fold and 2-fold, respectively. During titration with MgATP, LDAO slightly lowered affinity at ATP concentrations below 30 microM and had no effect at ATP concentrations above 30 microM. Maximal velocity was attained when the third catalytic site was titrated with MgATP in the presence or absence of LDAO. The same Kd's for binding MgATP to the (alphaA396C)3beta3(gammaA22C) mutant were observed before and after inactivating it by cross-linking alpha to gamma. This implies that the different affinities of catalytic sites for MgATP do not represent negative cooperativity, but rather represent heterogeneous affinities of catalytic sites dictated by the position of the coiled-coil of the gamma subunit within the central cavity of the (alpha beta)3 hexamer.

摘要

已对TF1 - ATP酶的α3β3γ和突变体α3(βY341W)3γ亚复合物的水解特性进行了比较。突变体的ATP酶活性对叠氮化物的周转依赖性抑制不太敏感,在测定过程中受Mg2+浓度增加的抑制作用较小,且受月桂基二甲基氧化胺(LDAO)的刺激较小。因此,与野生型相比,它在周转过程中将抑制性MgADP截留在催化位点的倾向要低得多。当催化位点被ATP或ADP(无论有无Mg2+)饱和时,α3(βY341W)3γ亚复合物中引入的色氨酸的荧光会完全淬灭。正如对大肠杆菌F1的βY331W突变体所报道的那样(韦伯,J.,威尔克 - 芒茨,S.,李,R. S.-F.,格雷尔,E.,西尼尔,A. E.(1993年)《生物化学杂志》268,20126 - 20133),这提供了一种直接探测核苷酸与催化位点结合的方法。向突变体亚复合物中加入化学计量的MgATP会淬灭三分之一的色氨酸荧光,60分钟后该荧光未恢复。这是由MgADP截留在单个催化位点所致。用MgADP或MgATP滴定α3(βY341W)3γ亚复合物的催化位点,得到的解离常数(Kd)分别<50 nM、约0.25 μM和约35 μM。滴定不受叠氮化物影响,而LDAO分别使催化位点2和3对MgADP的亲和力降低了5倍和2倍。在用MgATP滴定过程中,LDAO在ATP浓度低于30 μM时会略微降低亲和力,而在ATP浓度高于30 μM时则无影响。当用MgATP滴定第三个催化位点时,无论有无LDAO存在,都能达到最大速度。在用α与γ交联使其失活之前和之后,观察到(αA396C)3β3(γA22C)突变体结合MgATP的Kd相同。这意味着催化位点对MgATP的不同亲和力并不代表负协同性,而是代表由γ亚基的卷曲螺旋在(αβ)3六聚体中心腔内的位置所决定的催化位点的异质亲和力。

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