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Structural model of dodecameric heat-shock protein Hsp21: Flexible N-terminal arms interact with client proteins while C-terminal tails maintain the dodecamer and chaperone activity.

JBC. 2017-05; 
Gudrun Rutsdottir , *Johan Härmark , Yoran Weide , Hans Hebert , Morten Ib Rasmussen , Sven Wernersson , Michal Respondek , Mikael Akke , Peter Højrup , Philip J. B. Koeck , Christopher A. G. Söderberg and Cecilia Emanuelsson
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Codon Optimization Proteins, recombinant expression and purification of Hsp21 and Hsp21V181A—For recombinant expression of A. thaliana Hsp21 (UniProt # P31170) and the mutational variant Hsp21V181A, a plasmid with codon optimized sequence, was subcloned into pJC20 vector without the presequence (a service purchased from GenScript, Piscataway, USA), and transformed into Escherichia coli strain ER2566 and expressed using overnight autoinduction. A Get A Quote

摘要

Small heat shock proteins (sHsps) prevent aggregation of thermosensitive client proteins in a first line of defense against cellular stress. The mechanisms by which they perform this function have been hard to define due to limited structural information; currently there is only one highresolution structure of a plant sHsp published, of the cytosolic Hsp16.9. We took interest in Hsp21, a chloroplast-localized sHsp crucial for plant stress resistance, which has even longer Nterminals arms than Hsp16.9, with a functionally important and conserved methionine-rich motif. To provide a framework for investigating structure-function relationships of Hsp21 and understanding these sequence variations, we developed a str... More

关键词

aggregation, Arabidopsis thaliana, cryo-electron microscopy, chloroplast, homology modelling, molecular chaperone, oligomerization, protein crosslinking, small-angle X-ray scattering, structural model
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