Title of article :
Single-Molecule Protein Unfolding and Translocation by an ATP-Fueled Proteolytic Machine
Author/Authors :
Marie-Eve Aubin-Tam، نويسنده , , Adrian O. Olivares، نويسنده , , Robert T. Sauer، نويسنده , , Robert T. Sauer and Tania A. Baker، نويسنده , , Matthew J. Lang، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2011
Pages :
11
From page :
257
To page :
267
Abstract :
All cells employ ATP-powered proteases for protein-quality control and regulation. In the ClpXP protease, ClpX is a AAA+ machine that recognizes specific protein substrates, unfolds these molecules, and then translocates the denatured polypeptide through a central pore and into ClpP for degradation. Here, we use optical-trapping nanometry to probe the mechanics of enzymatic unfolding and translocation of single molecules of a multidomain substrate. Our experiments demonstrate the capacity of ClpXP and ClpX to perform mechanical work under load, reveal very fast and highly cooperative unfolding of individual substrate domains, suggest a translocation step size of 5–8 amino acids, and support a power-stroke model of denaturation in which successful enzyme-mediated unfolding of stable domains requires coincidence between mechanical pulling by the enzyme and a transient stochastic reduction in protein stability. We anticipate that single-molecule studies of the mechanical properties of other AAA+ proteolytic machines will reveal many shared features with ClpXP.
Journal title :
CELL
Serial Year :
2011
Journal title :
CELL
Record number :
1020663
Link To Document :
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