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使用分子建模软件估算染料和荧光探针的QSAR研究通用描述符的替代方法:1. 概念与程序。

Alternative methods for estimating common descriptors for QSAR studies of dyes and fluorescent probes using molecular modeling software: 1. Concepts and procedures.

作者信息

Dapson Richard W

机构信息

Dapson & Dapson, LLC , 6951 East AB Avenue, Richland, Michigan 49083.

出版信息

Biotech Histochem. 2013 Nov;88(8):477-88. doi: 10.3109/10520295.2013.811286. Epub 2013 Aug 1.

DOI:10.3109/10520295.2013.811286
PMID:23901945
Abstract

Quantitative structure activity relations (QSAR) models were developed to predict uptake and intracellular localization of probes or dyes in living cells. Many of the QSAR parameters used in such models are determined manually. Unfortunately, this requires a depth of chemical knowledge that biologists who wish to use these predictive tools do not necessarily possess. Moreover, some of the parameters are not easily obtained for all dyes and probes, which further restricts widespread use of QSAR methodology. Alternatives to some of these QSAR descriptors are defined and explained here. Estimation of these novel parameters using molecular modeling software, widely available and readily usable on personal computers in a variety of forms and brands, is described here. QSAR researchers need only draw the molecular structure and, with the proper commands, obtain either the parameters directly or the information to calculate them. I also demonstrate how the same software can generate some of the standard QSAR parameters, e.g., MW, Z, CBN, more reliably and conveniently than the manual procedures. A particularly problematic descriptor is log P, the logarithm of the octanol/water partition coefficient of a probe. This is discussed in detail and a novel alternative measure, the hydrophilic/lipophilic index (HLI), is introduced together with preliminary validation.

摘要

定量构效关系(QSAR)模型被开发用于预测探针或染料在活细胞中的摄取和细胞内定位。此类模型中使用的许多QSAR参数是手动确定的。不幸的是,这需要一定的化学知识深度,而希望使用这些预测工具的生物学家不一定具备。此外,并非所有染料和探针都能轻易获得某些参数,这进一步限制了QSAR方法的广泛应用。本文定义并解释了其中一些QSAR描述符的替代方法。本文描述了使用分子建模软件估计这些新参数的方法,这些软件以各种形式和品牌广泛可用且易于在个人计算机上使用。QSAR研究人员只需绘制分子结构,并通过适当的命令直接获得参数或获取计算参数所需的信息。我还展示了相同的软件如何比手动程序更可靠、更方便地生成一些标准的QSAR参数,例如分子量(MW)、电荷数(Z)、连接性指数(CBN)。一个特别成问题的描述符是log P,即探针的正辛醇/水分配系数的对数。本文对此进行了详细讨论,并引入了一种新的替代测量方法——亲水/亲脂指数(HLI),并进行了初步验证。

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