Pannu Navraj S, McCoy Airlie J, Read Randy J
Department of Haematology, Cambridge Institute for Medical Research, Wellcome Trust/MRC Building, Hills Road, Cambridge CB2 2XY, England.
Acta Crystallogr D Biol Crystallogr. 2003 Oct;59(Pt 10):1801-8. doi: 10.1107/s090744490301936x. Epub 2003 Sep 19.
Probabilistic methods involving maximum-likelihood parameter estimation have become a powerful tool in computational crystallography. At the centre of these methods are the relevant probability distributions. Here, equations are developed based on the complex multivariate normal distribution that generalize the distributions currently used in maximum-likelihood model and heavy-atom refinement. In this treatment, the effects of various sources of error in the experiment are considered separately and allowance is made for correlations among sources of error. The multivariate distributions presented are closely related to the distributions previously derived in ab initio phasing and can be applied to many different aspects of a crystallographic structure-determination process including model refinement, density modification, heavy-atom phasing and refinement or combinations of them. The underlying probability distributions for multiple isomorphous replacement are re-examined using these techniques. The re-analysis requires the underlying assumptions to be made explicitly and results in a variance term that, unlike those previously used for maximum-likelihood multiple isomorphous replacement phasing, is expressed explicitly in terms of structure-factor covariances. Test cases presented show that the newly derived multiple isomorphous replacement likelihood functions perform satisfactorily compared with currently used programs.
涉及最大似然参数估计的概率方法已成为计算晶体学中的一种强大工具。这些方法的核心是相关的概率分布。在此,基于复多元正态分布推导出一些方程,这些方程推广了当前在最大似然模型和重原子精修中使用的分布。在这种处理方法中,实验中各种误差源的影响被分别考虑,并考虑了误差源之间的相关性。所给出的多元分布与先前在从头相位法中推导的分布密切相关,并且可以应用于晶体结构测定过程的许多不同方面,包括模型精修、密度修改、重原子相位法和精修或它们的组合。使用这些技术重新审视了多同晶置换的潜在概率分布。重新分析要求明确做出潜在假设,并得出一个方差项,与先前用于最大似然多同晶置换相位法的方差项不同,这个方差项是根据结构因子协方差明确表示的。所给出的测试案例表明,与当前使用的程序相比,新推导的多同晶置换似然函数表现令人满意。