Beach Heather, Cole Roger, Gill Michelle L, Loria J Patrick
Department of Chemistry, Yale University, New Haven, Connecticut 06520, USA.
J Am Chem Soc. 2005 Jun 29;127(25):9167-76. doi: 10.1021/ja0514949.
Solution NMR spin-relaxation experiments were used to compare mus-ms dynamics in RNase A in the apo form and as complexed to the substrate-mimic, pTppAp. The crystal structure of the RNase A/pTppAp complex was determined and demonstrates that this ligand binds at the active site and utilizes established substrate binding sites in its interaction with RNase A. Relaxation-compensated CPMG experiments identify flexible residues in and around the active site in both the apo and pTppAp-bound enzyme. Quantitative analysis of the NMR spin-relaxation dispersion curves show that the time scale of motion in RNase A is unchanged when pTppAp binds and is similar to the time scale for the rate-determining step of the catalytic reaction. Temperature-dependent measurements provide an activation barrier for motion of 5.2 +/- 1.0 kcal/mol and 4.5 +/- 1.2 kcal/mol for the apo and pTppAp forms of RNase A, respectively. These data indicate very similar motion exists in the free and bound enzyme. Additionally, chemical shift data suggests that the magnitude of motion is also similar for these two forms and that it is likely that apo enzyme interconverts to a structure that resembles a ligand-bound form. Likewise, it appears that the bound conformation samples the apo enzyme form even when ligand is present. Taken together the data imply that RNase A is in a preexisting dynamic equilibrium between two conformations that represent the open and closed enzyme forms. These data suggest that ligand binding stabilizes the bound conformer but does not induce it.
溶液核磁共振自旋弛豫实验用于比较脱辅基形式的核糖核酸酶A(RNase A)以及与底物类似物pTppAp结合的RNase A中的分子动力学。确定了RNase A/pTppAp复合物的晶体结构,结果表明该配体结合在活性位点,并在与RNase A的相互作用中利用已有的底物结合位点。弛豫补偿的CPMG实验确定了脱辅基酶和结合pTppAp的酶的活性位点及其周围的柔性残基。对核磁共振自旋弛豫色散曲线的定量分析表明,当结合pTppAp时,RNase A中的运动时间尺度不变,且与催化反应速率决定步骤的时间尺度相似。温度依赖性测量分别给出了脱辅基形式和结合pTppAp形式的RNase A运动的活化能垒,分别为5.2±1.0千卡/摩尔和4.5±1.2千卡/摩尔。这些数据表明,游离酶和结合配体的酶中存在非常相似的运动。此外,化学位移数据表明,这两种形式的运动幅度也相似,脱辅基酶可能会相互转化为类似于配体结合形式的结构。同样,即使存在配体,结合构象似乎也会呈现脱辅基酶形式。综合这些数据表明,RNase A在代表开放和闭合酶形式的两种构象之间处于预先存在的动态平衡中。这些数据表明,配体结合稳定了结合构象,但不会诱导其形成。