1iwv

Revision as of 18:29, 12 November 2007 by OCA (talk | contribs) (New page: left|200px<br /> <applet load="1iwv" size="450" color="white" frame="true" align="right" spinBox="true" caption="1iwv, resolution 1.4Å" /> '''Crystal Structure An...)
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Crystal Structure Analysis of Human lysozyme at 147K.

File:1iwv.gif


1iwv, resolution 1.4Å

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OverviewOverview

The static and dynamic structures of human lysozyme at seven different, temperatures ranging from 113 to 178 K were investigated by normal-mode, refinement of the cryogenic X-ray diffraction data collected from a single, crystal. Normal-mode refinement decomposes the mean-square fluctuations of, protein atoms from their average position into the contributions from the, internal degrees of freedom, which change the shape of the protein, structure, and those from the external degrees of freedom, which generate, rigid-body motions in the crystal. While at temperatures below 150 K the, temperature dependence of the total mean-square fluctuations shows a small, gradient similar to that predicted theoretically by normal-mode analysis, at temperatures above 150 K there is an apparent inflection in the, temperature dependence with a higher gradient. The inflection in the, temperature dependence at temperatures above 150 K occurs mostly in the, external degrees of freedom. Possible causes for the dynamic transition, are discussed with respect to the crystal packing and physicochemical, properties of crystalline water.

DiseaseDisease

Known diseases associated with this structure: Amyloidosis, renal OMIM:[153450], Microphthalmia, syndromic 1 OMIM:[309800]

About this StructureAbout this Structure

1IWV is a Single protein structure of sequence from Homo sapiens with CL as ligand. Active as Lysozyme, with EC number 3.2.1.17 Full crystallographic information is available from OCA.

ReferenceReference

Nonlinear temperature dependence of the crystal structure of lysozyme: correlation between coordinate shifts and thermal factors., Joti Y, Nakasako M, Kidera A, Go N, Acta Crystallogr D Biol Crystallogr. 2002 Sep;58(Pt 9):1421-32. Epub 2002, Aug 23. PMID:12198298

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