Zhang Xiaodong, Bruice Thomas C
Department of Chemistry & Biochemistry, University of California at Santa Barbara, Santa Barbara, California 93106, USA.
Biochemistry. 2007 Dec 25;46(51):14838-44. doi: 10.1021/bi7014579. Epub 2007 Nov 29.
Molecular dynamics (MD) simulations and hybrid quantum mechanics/molecular mechanics (QM/MM) calculations have been carried out in an investigation of histone lysine methyltransferase (SET7/9). Proton dissociation (SET7/9.Lys4-NH3+.AdoMet --> SET7/9.Lys4-NH2.AdoMet + H+) must be prior to the methylation by S-adenosylmethionine (AdoMet). We find that a water channel is formed to allow escape of the proton to solvent. The water channel appears in the presence of AdoMet, but is not present in the species SET7/9.Lys4-NH3+ or SET7/9.Lys4-N(Me)H2+.AdoHcy. A water channel is not formed in the ground state of SET7/9.Lys4-N(Me)H2+.AdoMet, and the second methyl transfer does not occur. The structure of SET7/9.Lys4-N(Me)H2+.AdoMet includes a greater distance (6.1 +/- 0.3 A) between Cgamma(AdoMet) and N(MeLys4) than is present in SET7/9.Lys4-NH3+.AdoMet (5.7 +/- 0.2 A). The electrostatic interactions between the positive charges on AdoMet and SET7/9.Lys4-NH3+ decrease the pKa of the latter from 10.9 +/- 0.4 to 8.2 +/- 0.6, and this is not seen in the SET7/9.Lys4-N(Me)H2+.AdoMet species. The formation, or not, of a water channel, the distance between Sdelta(AdoMet) and N(Lys4), and the angle Sdelta(AdoMet)-Cgamma(AdoMet)-N(Lys4) determine whether methyl transfer can occur. By QM/MM, the calculated free energy barrier of the methyl transfer reaction in the SET7/9 [Lys4-NH2 + AdoMet --> Lys4-N(Me)H2+ + AdoHcy] complex is DeltaG++ = 19.0 +/- 1.6 kcal/mol. This DeltaG++ is in agreement with the value of 20.9 kcal/mol calculated from the experimental rate constant (0.24 min(-1)).
为了研究组蛋白赖氨酸甲基转移酶(SET7/9),进行了分子动力学(MD)模拟和量子力学/分子力学混合(QM/MM)计算。质子解离(SET7/9.Lys4-NH3+.AdoMet --> SET7/9.Lys4-NH2.AdoMet + H+)必须先于S-腺苷甲硫氨酸(AdoMet)进行甲基化反应。我们发现会形成一个水通道,以使质子逃逸到溶剂中。水通道在AdoMet存在时出现,但在SET7/9.Lys4-NH3+或SET7/9.Lys4-N(Me)H2+.AdoHcy物种中不存在。在SET7/9.Lys4-N(Me)H2+.AdoMet的基态中不会形成水通道,并且不会发生第二次甲基转移。SET7/9.Lys4-N(Me)H2+.AdoMet的结构中,Cgamma(AdoMet)与N(MeLys4)之间的距离(6.1±0.3 Å)大于SET7/9.Lys4-NH3+.AdoMet中的距离(5.7±0.2 Å)。AdoMet上的正电荷与SET7/9.Lys4-NH3+之间的静电相互作用使后者的pKa从10.9±0.4降至8.2±0.6,而在SET7/9.Lys4-N(Me)H2+.AdoMet物种中未观察到这种情况。水通道的形成与否、Sdelta(AdoMet)与N(Lys4)之间的距离以及Sdelta(AdoMet)-Cgamma(AdoMet)-N(Lys4)的角度决定了甲基转移是否能够发生。通过QM/MM计算,SET7/9 [Lys4-NH2 + AdoMet --> Lys4-N(Me)H2+ + AdoHcy]复合物中甲基转移反应的计算自由能垒为ΔG++ = 19.0±1.6 kcal/mol。这个ΔG++与根据实验速率常数(0.24 min(-1))计算得到的20.9 kcal/mol的值一致。