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Followings are selected publications by Nishizaka, T.

Adachi, K., Oiwa, K., Yoshida, M., Nishizaka, T. and Kinosita, K., Jr.

Controlled rotation of the F(1)-ATPase reveals differential and continuous binding changes for ATP synthesis. Nature Communications. 3. 1022 (2012)

Kim, K., Yajima, J., Oh, Y., Lee, W., Oowada, S., Nishizaka, T. and Kim, D.

Nanoscale localization sampling based on nanoantenna arrays for super-resolution imaging of fluorescent monomers on sliding microtubules. Small. 8. 892-900 (2012)

Sato, C., Manaka, S., Nakane, D., Nishiyama, H., Suga, M., Nishizaka, T., Miyata, M. and Maruyama, Y.

Rapid imaging of mycoplasma in solution using Atmospheric Scanning Electron Microscopy (ASEM).Biochemical and Biophysical Research Communications. 417. 1213-8 (2012)

Sugawa, M., Okada, K. A., Masaike, T. and Nishizaka, T.

A change in the radius of rotation of F1-ATPase indicates a tilting motion of the central shaft. Biophysical Journal. 101. 2201-2206 (2011)

Tsuji, T., S. Kawai-Noma, C.G. Pack, H. Terajima, J. Yajima, T. Nishizaka, M. Kinjo and H. Taguchi, Single-particle tracking of quantum dot-conjugated prion proteins inside yeast cells. Biochemical and Biophysical Research Communications, 405, 638-43 (2011)

Tabata, K. V., Sato K., Ide T., Nishizaka T., Nakano A., and Noji H.
Visualization of cargo concentration by COPII minimal machinery in a planar lipid membrane. EMBO Journal, 28, 3279-89 (2009)

Masaike, T., Koyama-Horibe, F., Oiwa, K., Yoshida, M. and Nishizaka, T. Cooperative three-step motions in catalytic subunits of F1-ATPase correlate with 80° and 40° substep rotations. Nat. Struct. Mol. Biol. 15, 1326-1333 (2008).

Yajima, J., Mizutani K. and Nishizaka T. A torque component present in mitotic kinesin Eg5 revealed by three-dimensional tracking. Nat. Struct. Mol. Biol. 15, 1119-1121 (2008).

Adachi, K. et al. Coupling of Rotation and Catalysis in F1-ATPase Revealed by Single-Molecule Imaging and Manipulation. Cell 130, 309-321 (2007).

Muneyuki, E. et al. Single Molecule Energetics of F1-ATPase Motor. Biophys J 92, 1806-1812 (2007).

Nishizaka, T. et al. Chemomechanical coupling in F1-ATPase revealed by simultaneous observation of nucleotide kinetics and rotation. Nat. Struct. Mol. Biol. 11, 142-148 (2004).

Nishizaka, T., Shi, Q. and Sheetz, M. P. Position-dependent linkages of fibronectin-integrin-cytoskeleton. Proc. Natl. Acad. Sci. USA 97, 692-697 (2000).

Nishizaka, T. et al. Characterization of single actomyosin rigor bonds: load dependence of lifetime and mechanical properties. Biophys. J. 79, 962-974 (2000).

Kato, H. et al. Imaging of thermal activation of actomyosin motors. Proc. Natl. Acad. Sci. USA 96, 9602-9606 (1999).

Nishizaka, T. et al. Unbinding force of a single motor molecule of muscle measured using optical tweezers. Nature 377, 251-254 (1995).

Nishizaka, T., Yagi, T., Tanaka, Y. and Ishiwata, S. Right-handed rotation of an actin filament in an in vitro motile system. Nature 361, 269-271 (1993).

By Masaike, Tomoko

Masaike, T., Koyama-Horibe, F., Oiwa, K., Yoshida, M. and Nishizaka, T. Cooperative three-step motions in catalytic subunits of F1-ATPase correlate with 80° and 40° substep rotations. Nat. Struct. Mol. Biol. 15, 1326-1333 (2008).

Masaike, T. et al. Probing conformations of the beta subunit of F0F1-ATP synthase in catalysis. Biochem Biophys Res Commun 342, 800-807 (2006).
Yasuda, R. et al. The ATP-waiting conformation of rotating F1-ATPase revealed by single-pair fluorescence resonance energy transfer. Proc Natl Acad Sci U S A 100, 9314-9318 (2003).

Masaike, T. et al. F1-ATPase changes its conformations upon phosphate release. J. Biol. Chem. 277, 21643-21649 (2002).

Ariga, T., Masaike, T., Noji, H. and Yoshida, M. Stepping rotation of F1-ATPase with one, two, or three altered catalytic sites that bind ATP only slowly. J Biol Chem 277, 24870-24874 (2002).

Muneyuki, E. et al. FoF1-ATP synthase: general structural features of 'ATP-engine' and a problem on free energy transduction. Biochim. Biophys. Acta 1458, 467-481 (2000).
Masaike, T. et al. Rotation of F1-ATPase and the hinge residues of the β subunit. J. Exp. Biol. 203, 1-8 (2000).

By Mizutani, Kana

Yajima, J., Mizutani K. and Nishizaka T. A torque component present in mitotic kinesin Eg5 revealed by three- dimensional tracking. Nat. Struct.Mol. Biol. 15, 1119-1121 (2008).

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