Zhao Yuan, Cheng Tiejun, Wang Renxiao
State Key Laboratory of Bioorganic Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 354 Fenglin Road, Shanghai 200032, People's Republic of China.
J Chem Inf Model. 2007 Jul-Aug;47(4):1379-85. doi: 10.1021/ci700028w. Epub 2007 May 27.
Format conversion is very common in structure preparation in molecular modeling studies. Unfortunately, format conversion cannot always be executed precisely. We have developed an automatic method, called I-interpret (available on-line at http://www.sioc-ccbg.ac.cn/software/I-interpret/), for interpreting the chemical structure of a given organic molecule merely from its essential structural information, including element identities and three-dimensional coordinates of its component atoms. I-interpret uses standard geometrical parameters of organic molecules in atom/bond-type assignment. A series of elaborate considerations are arranged in a logical sequence for this purpose. I-interpret was tested on a set of 179 small organic molecules from the Protein Data Bank and a set of 1990 organic molecules from the NCI diversity set. On both sets, it achieved a success rate of over 95% in interpreting the correct chemical structures, outperforming other programs under our evaluation. I-interpret also provides users some optional functions, which makes it more flexible and powerful in practice. It may serve as a valuable tool for processing chemical structures in molecular modeling.
在分子建模研究的结构准备过程中,格式转换非常常见。不幸的是,格式转换并不总是能够精确执行。我们开发了一种名为I-interpret的自动方法(可在http://www.sioc-ccbg.ac.cn/software/I-interpret/在线获取),仅根据给定有机分子的基本结构信息(包括其组成原子的元素身份和三维坐标)来解读其化学结构。I-interpret在原子/键类型分配中使用有机分子的标准几何参数。为此,一系列精心的考量按逻辑顺序排列。I-interpret在一组来自蛋白质数据库的179个小有机分子以及一组来自美国国立癌症研究所多样性集的1990个有机分子上进行了测试。在这两组分子上,它在解读正确化学结构方面的成功率超过了95%,在我们的评估中优于其他程序。I-interpret还为用户提供了一些可选功能,这使其在实际应用中更加灵活和强大。它可以作为分子建模中处理化学结构的有价值工具。