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Biochemical and Biophysical Research Communications|July 15, 1999
Rotation of Escherichia coli F(1)-ATPaseH Noji, K Häsler, W Junge, et al.The Journal of Biological Chemistry|May 9, 2000
The role of the DELSEED motif of the beta subunit in rotation of F1-ATPaseK Y Hara, H Noji, D Bald, et al.The Journal of Experimental Biology|December 22, 1999
Rotation of F(1)-ATPase and the hinge residues of the beta subunitT Masaike, N Mitome, H Noji, et al.Proceedings of the National Academy of Sciences of the United States of America|June 7, 2000
Stepping rotation of F1-ATPase visualized through angle-resolved single-fluorophore imagingK Adachi, R Yasuda, H Noji, et al.FEBS Letters|April 4, 2000
Observations of rotation within the F(o)F(1)-ATP synthase: deciding between rotation of the F(o)c subunit ring and artifactS P Tsunoda, R Aggeler, H Noji, et al.The Biochemical Journal|September 24, 1999
alpha3beta3gamma complex of F1-ATPase from thermophilic Bacillus PS3 can maintain steady-state ATP hydrolysis activity depending on the number of non-catalytic sitesT Amano, T Matsui, E Muneyuki, et al.Biochemical Society Transactions|October 21, 2006
F1-ATPase: a highly coupled reversible rotary motorR Iino, H NojiProceedings of the National Academy of Sciences of the United States of America|November 15, 2001
Pause and rotation of F(1)-ATPase during catalysisY Hirono-Hara, H Noji, M Nishiura, et al.Chemical Communications (Cambridge, England)|May 30, 2014
Real-time fluorescence visualization of slow tautomerization of single free-base phthalocyanines under ambient conditionsT Ikeda, R Iino, H NojiEssays in Biochemistry|December 11, 2002
F1-ATPase: a highly efficient rotary ATP machineK Kinosita, R Yasuda, H NojiPageof 321