Taniuchi H, Bohnert J L
J Biol Chem. 1975 Mar 25;250(6):2388-94.
The rate of unfolding of Nuclease-T at pH 8,20 degrees was determined as a function of concentration of the ligands deoxythymidine 3',5'-diphosphate (pdTp) and Ca2+ on the basis of the rate of exchange between free fragment, Nuclease-T(50-149) and labeled fragment, Nuclease-T-(50-149) incorporated in the structure of nuclease-T (Taniuchi, H. (1973) J. Biol. Chem. 248, 5164-5174). The rate constant of unfolding of unliganded Nuclease-T' was 4.6 times 10-4s-1. Those of Nuclease-T' bound with pdTp, with Ca2+, and with both pdtp and Ca2+ were 9.0 times 10-5, 1.6 times 10-4, and 2.2 times 10-5s-1, respectively. The association constants of pdTp and Ca2+ with Nuclease-T' were found to be 1.0 times 10-4 and 2.0 times 10-2 m-1, respectively. Those of pdTp with Nuclease-T' plus Ca2+ and of Ca2+ with Nuclease-T' plus pdTp were 4 times 10-5 and 1.4 times 10-4M-1, respectively. The calculation of free energy change on the basis of the association constants shows that the magnitude of negative free energy change involved in the binding of either of the two ligands increases by approximately 2 kcal when the other ligand is already bound. There is a correlation between the free energy change and the specifically coupled with the cooperative interacions operating throught the three-dimensional structure resulting in strengthening of the interactions throughtout the structure, including those with the ligands, without a large change in conformation.
基于游离片段核酸酶 - T(50 - 149)与掺入核酸酶 - T结构中的标记片段核酸酶 - T-(50 - 149)之间的交换速率,测定了pH 8、20℃条件下核酸酶 - T的解折叠速率与配体脱氧胸苷3',5'-二磷酸(pdTp)和Ca²⁺浓度的函数关系(谷内,H.(1973年)《生物化学杂志》248,5164 - 5174)。未结合配体的核酸酶 - T'的解折叠速率常数为4.6×10⁻⁴s⁻¹。与pdTp结合、与Ca²⁺结合以及与pdTp和Ca²⁺都结合的核酸酶 - T'的解折叠速率常数分别为9.0×10⁻⁵、1.6×10⁻⁴和2.2×10⁻⁵s⁻¹。发现pdTp和Ca²⁺与核酸酶 - T'的缔合常数分别为1.0×10⁻⁴和2.0×10⁻²m⁻¹。pdTp与核酸酶 - T'加Ca²⁺的缔合常数以及Ca²⁺与核酸酶 - T'加pdTp的缔合常数分别为4×10⁻⁵和1.4×10⁻⁴M⁻¹。基于缔合常数计算自由能变化表明,当另一种配体已经结合时,两种配体中任何一种结合所涉及的负自由能变化幅度增加约2千卡。自由能变化与通过三维结构起作用的协同相互作用之间存在相关性,这种协同相互作用导致整个结构中的相互作用增强,包括与配体的相互作用,而构象变化不大。