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1.
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Watanabe S, Radman-Livaja M, Rando OJ, Peterson CL. A Histone Acetylation Switch Regulates H2A.Z Deposition by the SWR-C Remodeling Enzyme. Science. 2013 Apr 12; 340(6129):195-9.
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2.
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Nishimoto N, Watanabe M, Watanabe S, Sugimoto N, Yugawa T, Ikura T, Koiwai O, Kiyono T, Fujita M. Heterocomplex formation by Arp4 and ß-actin is involved in the integrity of the Brg1 chromatin remodeling complex. J Cell Sci. 2012 Aug 15; 125(Pt 16):3870-82.
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3.
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Watanabe S, Peterson CL. The INO80 Family of Chromatin-Remodeling Enzymes: Regulators of Histone Variant Dynamics. Cold Spring Harb Symp Quant Biol. 2010; 75:35-42.
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4.
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Wippo CJ, Israel L, Watanabe S, Hochheimer A, Peterson CL, Korber P. The RSC chromatin remodelling enzyme has a unique role in directing the accurate positioning of nucleosomes. EMBO J. 2011 Apr 6; 30(7):1277-88.
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5.
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Papamichos-Chronakis M, Watanabe S, Rando OJ, Peterson CL. Global Regulation of H2A.Z Localization by the INO80 Chromatin-Remodeling Enzyme Is Essential for Genome Integrity. Cell. 2011 Jan 21; 144(2):200-13.
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6.
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Komaba S, Watanabe S, Umeki N, Sato O, Ikebe M. Effect of phosphorylation in the motor domain of human myosin IIIA on its ATP hydrolysis cycle. Biochemistry. 2010 May 4; 49(17):3695-702.
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7.
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Watanabe S, Resch M, Lilyestrom W, Clark N, Hansen JC, Peterson C, Luger K. Structural characterization of H3K56Q nucleosomes and nucleosomal arrays. Biochim Biophys Acta. 2010 May-Jun; 1799(5-6):480-6.
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8.
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Sinha M, Watanabe S, Johnson A, Moazed D, Peterson CL. Recombinational repair within heterochromatin requires ATP-dependent chromatin remodeling. Cell. 2009 Sep 18; 138(6):1109-21.
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9.
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Sugimoto Y, Sato O, Watanabe S, Ikebe R, Ikebe M, Wakabayashi K. Reverse conformational changes of the light chain-binding domain of myosin V and VI processive motor heads during and after hydrolysis of ATP by small-angle X-ray solution scattering. J Mol Biol. 2009 Sep 18; 392(2):420-35.
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10.
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Umeki N, Jung HS, Watanabe S, Sakai T, Li XD, Ikebe R, Craig R, Ikebe M. The tail binds to the head-neck domain, inhibiting ATPase activity of myosin VIIA. Proc Natl Acad Sci U S A. 2009 May 26; 106(21):8483-8.
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11.
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Watanabe S, Umeki N, Ikebe R, Ikebe M. Impacts of Usher syndrome type IB mutations on human myosin VIIa motor function. Biochemistry. 2008 Sep 9; 47(36):9505-13.
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12.
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Watanabe S, Watanabe TM, Sato O, Awata J, Homma K, Umeki N, Higuchi H, Ikebe R, Ikebe M. Human myosin Vc is a low duty ratio nonprocessive motor. J Biol Chem. 2008 Apr 18; 283(16):10581-92.
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13.
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Watanabe S, Mabuchi K, Ikebe R, Ikebe M. Mechanoenzymatic characterization of human myosin Vb. Biochemistry. 2006 Feb 28; 45(8):2729-38.
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14.
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Watanabe S, Ikebe R, Ikebe M. Drosophila myosin VIIA is a high duty ratio motor with a unique kinetic mechanism. J Biol Chem. 2006 Mar 17; 281(11):7151-60.
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15.
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Ajtai K, Garamszegi SP, Watanabe S, Ikebe M, Burghardt TP. The myosin cardiac loop participates functionally in the actomyosin interaction. J Biol Chem. 2004 May 28; 279(22):23415-21.
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