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Likelihood-based estimation of substructure content from single-wavelength anomalous diffraction (SAD) intensity data

机译:基于可能性估计子结构内容与单波长反常衍射强度数据(SAD)

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摘要

SAD phasing can be challenging when the signal-to-noise ratio is low. In such cases, having an accurate estimate of the substructure content can determine whether or not the substructure of anomalous scatterer positions can successfully be determined. Here, a likelihood-based target function is proposed to accurately estimate the strength of the anomalous scattering contribution directly from the measured intensities, determining a complex correlation parameter relating the Bijvoet mates as a function of resolution. This gives a novel measure of the intrinsic anomalous signal. The SAD likelihood target function also accounts for correlated errors in the measurement of intensities from Bijvoet mates, which can arise from the effects of radiation damage. When the anomalous signal is assumed to come primarily from a substructure comprising one anomalous scatterer with a known value of f'' and when the protein composition of the crystal is estimated correctly, the refined complex correlation parameters can be interpreted in terms of the atomic content of the primary anomalous scatterer before the substructure is known. The maximum-likelihood estimation of substructure content was tested on a curated database of 357 SAD cases with useful anomalous signal. The prior estimates of substructure content are highly correlated to the content determined by phasing calculations, with a correlation coefficient (on a log-log basis) of 0.72.
机译:悲伤的定相时可能是一个挑战信噪比很低。有一个准确的估计子结构内容可以确定是否子结构反常散射体的位置成功地确定。提出了基于可能性目标函数准确地估计异常的强度直接从散射的贡献测量强度,确定一个复杂毕吉伯伴侣相关的相关参数的函数解析。内在的异常信号的测量。悲伤似然目标函数也占了相关测量中的错误强度从毕吉博伴侣,可以出现从辐射损伤的影响。异常信号假设来为主从一个子结构组成一个异常散射体的已知值f”当蛋白质晶体的成分估计正确,精致复杂的相关性参数可以解释的原子主要异常散射体的内容在子结构。最大似然估计子结构于357年策划数据库的内容进行了测试悲伤的情况下提供有用的异常信号。估计子结构内容的高度相关内容由定相计算相关系数(基于对数)为0.72。

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