Gohda K, Ohta D, Iwasaki G, Ertl P, Jacob O
Research and Development Department, CIBA-GEIGY AG, Basel, Switzerland.
J Chem Inf Comput Sci. 2001 Jan-Feb;41(1):196-201. doi: 10.1021/ci000332n.
Histidinol dehydrogenase (HDH) is one of the enzymes involved in the L-histidine biosynthesis pathway. HDH is a dimer that contains one Zn2+ ion in each identical subunit. In this study, we predicted a possible binding conformation of the intermediate L-histidinal, which is experimentally not known, using a computational modeling method and three potent HDH inhibitors whose structures are similar to that of L-histidinal. At first, a set of the most probable active conformations of the potent inhibitors was determined using two different pharmacophore mapping techniques, the active analogue approach and the distance comparison method. From the most probable active conformations of the three potent inhibitors, the common parts of the L-histidinal structure were extracted and refined by energy minimization to obtain the binding conformation of L-histidinal. This predicted conformation of L-histidinal agrees with an experimentally determined conformation of L-histidine in a single crystal, suggesting that it is an experimentally acceptable conformation. The capability in this conformation to coordinate a Zn2+ ion was examined by comparing the spatial relative geometry of its functional groups with those of ligands that coordinate with a Zn2+ ion in Zn proteins of the Protein Data Bank. This comparison supported our predicted conformation.
组氨醇脱氢酶(HDH)是参与L-组氨酸生物合成途径的酶之一。HDH是一种二聚体,在每个相同的亚基中含有一个Zn2+离子。在本研究中,我们使用计算建模方法以及三种结构与L-组氨醛相似的有效HDH抑制剂,预测了实验上未知的中间产物L-组氨醛的可能结合构象。首先,使用两种不同的药效团映射技术,即活性类似物方法和距离比较方法,确定了一组有效抑制剂的最可能活性构象。从三种有效抑制剂的最可能活性构象中,提取L-组氨醛结构的共同部分,并通过能量最小化进行优化,以获得L-组氨醛的结合构象。L-组氨醛的这种预测构象与单晶中实验确定的L-组氨酸构象一致,表明它是一种实验上可接受的构象。通过将其官能团的空间相对几何结构与蛋白质数据库中与Zn2+离子配位的锌蛋白中配体的官能团空间相对几何结构进行比较,研究了这种构象中配位Zn2+离子的能力。这种比较支持了我们预测的构象。