Potter J D, Seidel J C, Leavis P, Lehrer S S, Gergely J
J Biol Chem. 1976 Dec 10;251(23):7551-6.
The Ca2+ binding component (TnC) of troponin has been selectively labeled with either a spin label, N-(1-oxyl-2,2,6,6-tetramethyl-4-piperidinyl) iodoacetamide, or with a fluorescent probe, S-mercuric-N-dansyl cysteine, presumably at its single cysteine residue (Cys-98) in order to probe the interactions of TnC with divalent metals and with other subunits of troponin. The modified protein has the same Ca2+ binding properties as native TnC (Potter, J. D., and Gergely, J. (1975) J. Biol. Chem. 250, 4628), viz. two Ca2+ binding sites at which Mg2+ appears to compete (Ca2+-Mg2+ sites, KCa = 2 X 10(7) M-1) and two sites at which Mg2+ does not compete (Ca2+-specific sites, KCa = 2 X 10(5) M-1). Either Ca2+ or Mg2+ alters the ESR spectrum of spin-labeled TnC in a manner that indicates a decrease in the mobility of the label, Ca2+ having a slightly greater effect. In systems containing both Ca2+ and Mg2+ the mobility of the spin label is identical with that in systems containing Ca2+ alone. The binding constants for Ca2+ and Mg2+ deduced from ESR spectral changes are 10(7) and 10(3) M-1, respectively, and the apparent affinity for Ca2+ decreases by about an order of magnitude on adding 2 mM Mg2+. Thus, the ESR spectral change is associated with binding of Ca2+ to one or both of the Ca2+-Mg2+ sites. Addition of Ca2+ to the binary complexes of spin-labeled TnC with either troponin T (TnT) or troponin I (TnI) produces greater reduction in the mobility of the spin label than in the case of spin-labeled TnC alone, and in the case of the complex with TnI the affinity for Ca2+ is increased by an order of magnitude. The fluorescence of dansyl (5-dimethylaminonaphthalene-1-sulfonyl)-labeled TnC is enhanced by Ca2+ binding to both high and low affinity sites with apparent binding constants of 2.6 X 10(7) M-1 and 2.9 X 10(5) M-1, respectively, calculated from the transition midpoints. The presence of 2 mM Mg2+, which produces no effect on dansyl fluorescence itself, in contrast to its effect on the spin label, shifts the high affinity constant to 2 X 10(6) M-1. Spectral changes produced by Ca2+ binding to the TnC-TnI complex furnish evidence that the affinity of TnC for Ca2+ is increased in the complex. The reactivity of Cys-98 to the labels and to 5,5'-dithiobis(2-nitrobenzoic acid) (Nbs2) is decreased by Ca2+ or Mg2+ both with native TnC and in 6 M urea. The reaction rate between Cys-98 and Nbs2 decreases to one-half the maximal value at a Ca2+ concentration that suggests binding to the Ca2+-Mg2+ sites. Formation of a binary complex between TnI and TnC reduces the rate of reaction, and there is a further reduction by Ca2+. The effect of Ca2+ takes place at concentrations that are 1 order of magnitude lower than in the case of TnC alone. These results suggest that the Ca2+ binding site adjacent to Cys-98 is one of the Ca2+-Mg2+ binding sites.
肌钙蛋白的Ca2+结合成分(TnC)已被用自旋标记物N-(1-氧代-2,2,6,6-四甲基-4-哌啶基)碘乙酰胺或荧光探针S-汞-N-丹磺酰半胱氨酸进行选择性标记,推测是在其单个半胱氨酸残基(Cys-98)处,以便探究TnC与二价金属以及肌钙蛋白其他亚基之间的相互作用。修饰后的蛋白质具有与天然TnC相同的Ca2+结合特性(波特,J.D.,和杰尔杰利,J.(1975年)《生物化学杂志》250,4628),即有两个Ca2+结合位点,Mg2+似乎在这两个位点竞争(Ca2+-Mg2+位点,KCa = 2×10(7) M-1),还有两个位点Mg2+不竞争(Ca2+特异性位点,KCa = 2×10(5) M-1)。Ca2+或Mg2+都会以一种表明标记物流动性降低的方式改变自旋标记TnC的电子顺磁共振谱,Ca2+的影响稍大一些。在同时含有Ca2+和Mg2+的体系中,自旋标记物的流动性与只含Ca2+的体系相同。从电子顺磁共振谱变化推导得出的Ca2+和Mg2+的结合常数分别为10(7)和10(3) M-1,加入2 mM Mg2+后,对Ca2+的表观亲和力降低约一个数量级。因此,电子顺磁共振谱变化与Ca2+结合到一个或两个Ca2+-Mg2+位点相关。向自旋标记TnC与肌钙蛋白T(TnT)或肌钙蛋白I(TnI)的二元复合物中加入Ca2+,会使自旋标记物的流动性降低程度比单独的自旋标记TnC更大,并且在与TnI形成的复合物中,对Ca2+的亲和力增加了一个数量级。丹磺酰(5-二甲基氨基萘-1-磺酰基)标记的TnC的荧光会因Ca2+结合到高亲和力和低亲和力位点而增强,从转变中点计算得出的表观结合常数分别为2.6×10(7) M-1和2.9×10(5) M-1。与对自旋标记物的影响相反,2 mM Mg2+本身对丹磺酰荧光没有影响,但会使高亲和力常数变为2×10(6) M-1。Ca2+结合到TnC-TnI复合物产生的光谱变化提供了证据,表明在复合物中TnC对Ca2+的亲和力增加。无论是天然TnC还是在6 M尿素中,Ca2+或Mg2+都会降低Cys-98对标记物以及对5,5'-二硫代双(2-硝基苯甲酸)(Nbs2)的反应性。在一个表明与Ca2+-Mg2+位点结合的Ca2+浓度下,Cys-98与Nbs2之间的反应速率降至最大值的一半。TnI和TnC之间形成二元复合物会降低反应速率,并且Ca2+会进一步降低反应速率。Ca2+产生影响的浓度比单独的TnC情况下低一个数量级。这些结果表明,与Cys-98相邻的Ca2+结合位点是Ca2+-Mg2+结合位点之一。