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Annual Review of Biochemistry|April 8, 2011
AAA+ proteases: ATP-fueled machines of protein destructionRobert T Sauer, Tania A BakerTrends in Biochemical Sciences|November 1, 2006
ATP-dependent proteases of bacteria: recognition logic and operating principlesTania A Baker, Robert T SauerBiochimica Et Biophysica Acta|July 9, 2011
ClpXP, an ATP-powered unfolding and protein-degradation machineTania A Baker, Robert T SauerProceedings of the National Academy of Sciences of the United States of America|April 15, 2015
Assaying the kinetics of protein denaturation catalyzed by AAA+ unfolding machines and proteasesVladimir Baytshtok, Tania A Baker, Robert T SauerNature|October 21, 2005
Rebuilt AAA + motors reveal operating principles for ATP-fuelled machinesAndreas Martin, Tania A Baker, Robert T SauerMolecular Cell|March 4, 2008
Diverse pore loops of the AAA+ ClpX machine mediate unassisted and adaptor-dependent recognition of ssrA-tagged substratesAndreas Martin, Tania A Baker, Robert T SauerProtein Science : a Publication of the Protein Society|November 22, 2011
The I domain of the AAA+ HslUV protease coordinates substrate binding, ATP hydrolysis, and protein degradationShankar Sundar, Tania A Baker, Robert T SauerNature Structural & Molecular Biology|January 29, 2008
Protein unfolding by a AAA+ protease is dependent on ATP-hydrolysis rates and substrate energy landscapesAndreas Martin, Tania A Baker, Robert T SauerNature Structural & Molecular Biology|October 22, 2008
Pore loops of the AAA+ ClpX machine grip substrates to drive translocation and unfoldingAndreas Martin, Tania A Baker, Robert T SauerMolecular Cell|July 7, 2007
Distinct static and dynamic interactions control ATPase-peptidase communication in a AAA+ proteaseAndreas Martin, Tania A Baker, Robert T SauerPageof 20