Williams Dudley H, Stephens Elaine, Zhou Min
Department of Chemistry, University of Cambridge, UK.
J Mol Biol. 2003 May 30;329(2):389-99. doi: 10.1016/s0022-2836(03)00428-5.
Some small molecules bind to their receptors, and transition states to enzymes, so strongly as to defy current understanding. We show that in the binding of biotin to streptavidin, the streptavidin structure becomes better packed. We conclude that this contraction of the streptavidin structure promotes biotin binding. The improved packing is associated with positively cooperative binding, occurring with a benefit in enthalpy and a cost in entropy. Evidence indicating that catalytic efficiency can also originate via improved packing in some enzyme transition states, derived from the work of others, is presented. Negatively cooperative ligand binding is concluded to induce converse effects (less efficient packing, a cost in enthalpy, and a benefit in entropy). It applies to the binding of O(2) to haemoglobin, which indeed occurs with a hitherto unreported loosening of the amide backbones of the haemoglobin monomers.
一些小分子与它们的受体以及酶的过渡态结合得非常紧密,以至于超出了目前的理解范围。我们发现,在生物素与抗生物素蛋白的结合过程中,抗生物素蛋白的结构变得更加紧密。我们得出结论,抗生物素蛋白结构的这种收缩促进了生物素的结合。紧密程度的提高与正协同结合相关,这种结合在焓上有利,在熵上有代价。文中还展示了其他研究工作的证据,表明催化效率也可以通过某些酶过渡态中紧密程度的提高而产生。负协同配体结合则会引发相反的效应(紧密程度降低、焓有代价、熵有利)。这适用于氧气与血红蛋白的结合,实际上,在这种结合过程中,血红蛋白单体的酰胺主链出现了迄今为止未被报道过的松弛现象。