Department of Biochemistry, The University of Iowa , Iowa City, Iowa 52242-1109, United States.
Biochemistry. 2014 Feb 11;53(5):881-94. doi: 10.1021/bi401583f. Epub 2014 Jan 30.
A role for protein dynamics in enzymatic catalysis of hydrogen transfer has received substantial scientific support, but the connections between protein structure and catalysis remain to be established. Valine residues 203 and 207 are at the binding site for the nicotinamide ring of the coenzyme in liver alcohol dehydrogenase and have been suggested to facilitate catalysis with "protein-promoting vibrations" (PPV). We find that the V207A substitution has small effects on steady-state kinetic constants and the rate of hydrogen transfer; the introduced cavity is empty and is tolerated with minimal effects on structure (determined at 1.2 Å for the complex with NAD(+) and 2,3,4,5,6-pentafluorobenzyl alcohol). Thus, no evidence is found to support a role for Val-207 in the dynamics of catalysis. The protein structures and ligand geometries (including donor-acceptor distances) in the V203A enzyme complexed with NAD(+) and 2,3,4,5,6-pentafluorobenzyl alcohol or 2,2,2-trifluoroethanol (determined at 1.1 Å) are very similar to those for the wild-type enzyme, except that the introduced cavity accommodates a new water molecule that contacts the nicotinamide ring. The structures of the V203A enzyme complexes suggest, in contrast to previous studies, that the diminished tunneling and decreased rate of hydride transfer (16-fold, relative to that of the wild-type enzyme) are not due to differences in ground-state ligand geometries. The V203A substitution may alter the PPV and the reorganization energy for hydrogen transfer, but the protein scaffold and equilibrium thermal motions within the Michaelis complex may be more significant for enzyme catalysis.
蛋白质动力学在酶促氢转移中的作用得到了大量科学支持,但蛋白质结构与催化之间的联系仍有待确定。缬氨酸残基 203 和 207 位于肝醇脱氢酶中辅酶的烟酰胺环结合部位,被认为通过“蛋白促进振动”(PPV)促进催化。我们发现 V207A 取代对稳态动力学常数和氢转移速率的影响很小;引入的空穴是空洞的,对结构的影响最小(在与 NAD(+)和 2,3,4,5,6-五氟苄醇复合物中测定为 1.2 Å)。因此,没有证据支持 Val-207 在催化动力学中的作用。V203A 酶与 NAD(+)和 2,3,4,5,6-五氟苄醇或 2,2,2-三氟乙醇复合物的蛋白质结构和配体几何形状(包括供体-受体距离)(在 1.1 Å 处测定)与野生型酶非常相似,除了引入的空穴容纳了一个与烟酰胺环接触的新水分子。与先前的研究相反,V203A 酶复合物的结构表明,隧道效应降低和氢转移速率降低(相对于野生型酶降低 16 倍)不是由于基态配体几何形状的差异所致。V203A 取代可能会改变 PPV 和氢转移的重组能,但酶催化中蛋白质支架和米氏复合物内的平衡热运动可能更为重要。