Journal:Acta Cryst D:S2059798319000214

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<scene name='80/805753/Cv/6'>Secondary structure ribbon representation of the structure of human IBA57</scene> with the residues for which even the main chain electron density is very poor if not absent at all highlighted in red (53-59, 61, 88-92, 115-118, 138-147, 262, 296-300, 306-311).
<scene name='80/805753/Cv/6'>Secondary structure ribbon representation of the structure of human IBA57</scene> with the residues for which even the main chain electron density is very poor if not absent at all highlighted in red (53-59, 61, 88-92, 115-118, 138-147, 262, 296-300, 306-311).
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<scene name='80/805753/Cv/7'>Superposition</scene> between [[6esr]] (red) and [[5oli]] (green) secondary structures. It appears that,
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<scene name='80/805753/Cv/7'>Superposition</scene> between [[6esr]] (red) and [[5oli]] (green) secondary structures. It appears that, in the case of [[6esr]], there is a slight loss in secondary structure elements (mainly β-strands in the N-terminus region) with respect to [[5oli]] and there is the appearance of a very short 3/10 helix around residue 90. It must be pointed out anyway that those regions mostly correspond to the regions in which electron density is very weak and thus model tracing can be quite approximate.
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in the case of [[6esr]], there is a slight loss in secondary structure elements (mainly β-strands in the N-terminus region) with respect to [[5oli]] and there is the appearance of a very short 3/10 helix around residue 90. It must be pointed out anyway that those regions mostly correspond to the regions in which electron density is very weak and thus model tracing can be quite approximate.
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*<scene name='80/805753/Cv/9'>1st I3C binding site</scene>. Water molecules are shown as red spheres.
*<scene name='80/805753/Cv/9'>1st I3C binding site</scene>. Water molecules are shown as red spheres.

Revision as of 14:26, 13 January 2019

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Alexander Berchansky, Jaime Prilusky

This page complements a publication in scientific journals and is one of the Proteopedia's Interactive 3D Complement pages. For aditional details please see I3DC.
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