Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4011831 | Experimental Eye Research | 2010 | 9 Pages |
Abstract
⺠The C-terminal extensions of α-crystallin are flexible, polar and are involved in chaperone action. ⺠Flexibility of the C-terminal residues in wild type αA- and αB-crystallin increases along the C-terminal extension (i.e. away from the core of the protein). ⺠During chaperone action with reduced α-lactalbumin, the residues of the C-terminal extension of the chaperone show reduced flexibility and appear to be involved in a dynamic interaction with the target protein. ⺠Flexibility of residues in the extensions of some C-terminal mutants, I159A/I161A αB- and K175L αB-crystallin is disrupted, and this is consistent with altered structure and chaperone activity seen in previous studies.
Keywords
water suppression enhanced through T1 effectsNOEIPTGDTTNOESYTOCSYHSQCnuclear magnetic resonanceisopropyl-1-thio-β-d-galactopyranosideNuclear Overhauser Effect SpectroscopYnuclear overhauser effectSDS-PAGEsodium dodecyl sulphate polyacrylamide gel electrophoresisNMRdithiothreitolSite directed mutagenesisNMR spectroscopyTotal correlation spectroscopyLuria-BertaniWetSmall heat-shock proteinC-terminal extensionMolecular chaperoneheteronuclear single quantum coherence
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Authors
Teresa M. Treweek, Agata Rekas, Mark J. Walker, John A. Carver,