R value: Difference between revisions
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The R value is used to assess progress in the refinement of a model from X-ray crystallographic data, and can be used as one factor in evaluating the quality of a model. R is a measure of error between the observed intensities from the diffraction pattern and the predicted intensities that are calculated from the model. R values of 0.20 or less are taken as evidence that the model is reliable. | The R value is used to assess progress in the refinement of a model from X-ray crystallographic data, and can be used as one factor in [[Quality assessment for molecular models|evaluating the quality of a model]]. R is a measure of error between the observed intensities from the diffraction pattern and the predicted intensities that are calculated from the model. R values of 0.20 or less are taken as evidence that the model is reliable. | ||
As a rule of thumb, models with R values substantially exceeding (resolution/10) should be treated with caution. Thus, if the resolution of a model is 2.5 Å, that model's R value should not exceed 0.25. Completely erroneous models (e.g. random models) give R values of 0.40 to 0.60. | As a rule of thumb, models with R values substantially exceeding (resolution/10) should be treated with caution. Thus, if the resolution of a model is 2.5 Å, that model's R value should not exceed 0.25. Completely erroneous models (e.g. random models) give R values of 0.40 to 0.60. | ||
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One famous pitfall that can result in a misleading R value is the addition of substantially more than one water molecule per amino acid. | One famous pitfall that can result in a misleading R value is the addition of substantially more than one water molecule per amino acid. | ||
==See Also== | |||
*[[Free R]] | |||
*[[Resolution]] | |||
*[[Temperature value]] | |||
*[[Quality assessment for molecular models]] | |||
==Content Donors== | ==Content Donors== | ||