Abstract
Microwave dielectric spectroscopy can measure the rotational mobility of water molecules that hydrate proteins and the hydration-shell volume. Using this technique, we have recently shown that apart from typical hydrating water molecules with lowered mobility there are other water molecules around the actin filaments (F-actin) which have a much higher mobility than that of bulk water [Biophys. J. 85 (2003) 3154]. We report here that the volume of this water component (hyper-mobile water) markedly increases without significant change of the volume of the ordinary hydration shell when the myosin motor-domain (S1, myosin subfragment-1) binds to F-actin. No hyper-mobile component was found in the hydration shell of S1 itself. The present results strongly suggest that the solvent space around S1 bound to F-actin is diffusionally asymmetric, which supports our model of force generation by actomyosin proposed previously [op. cit.]. © 2004 Elsevier Inc. All rights reserved.
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Suzuki, M., Kabir, S. R., Siddique, M. S. P., Nazia, U. S., Miyazaki, T., & Kodama, T. (2004). Myosin-induced volume increase of the hyper-mobile water surrounding actin filaments. Biochemical and Biophysical Research Communications, 322(1), 340–346. https://doi.org/10.1016/j.bbrc.2004.07.111
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