A streptavidin variant with slower biotin dissociation and increased mechanostability.

Chivers, Claire E; Crozat, Estelle; Chu, Calvin; Moy, Vincent T; Sherratt, David J; Howarth, Mark · Nat Methods · 2010

basic_science · Level V

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Abstract

Streptavidin binds biotin conjugates with exceptional stability but dissociation does occur, limiting its use in imaging, DNA amplification and nanotechnology. We identified a mutant streptavidin, traptavidin, with more than tenfold slower biotin dissociation, increased mechanical strength and improved thermostability; this resilience should enable diverse applications. FtsK, a motor protein important in chromosome segregation, rapidly displaced streptavidin from biotinylated DNA, whereas traptavidin resisted displacement, indicating the force generated by Ftsk translocation.

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