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Originally published In Press as doi:10.1074/jbc.M010217200 on January 12, 2001

J. Biol. Chem., Vol. 276, Issue 16, 12983-12990, April 20, 2001
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The Role of Water Molecules in the Association of Cytochrome P450cam with Putidaredoxin
AN OSMOTIC PRESSURE STUDY*

Yoshiaki Furukawa and Isao MorishimaDagger

From the Department of Molecular Engineering, Graduate School of Engineering, Kyoto University, Kyoto 606-8501, Japan

We have investigated the osmotic pressure dependence of the association between ferric cytochrome P450cam and putidaredoxin (Pdx) to gain an insight into the role of water molecules in the P450cam-reduced Pdx complexation amenable to physiological electron transfer. The association constant was evaluated from the electron transfer rates from reduced Pdx to P450cam. The natural logarithm of the association constant Ka was linearly reduced by the osmotic pressure, and osmotic stress yields uptake of 25 waters upon association. In contrast, uptake of only 13 waters is observed from the osmotic pressure dependence of the association in the nonphysiological redox partners P450cam and oxidized Pdx. Although general protein-protein associations proceed through dehydration around the complex interface, the interfacial waters could mediate hydrogen-bonding interactions. Therefore, about 10 more interfacial waters imply an additional water-mediated hydrogen-bonding network in the P450cam·reduced Pdx complex, which does not exist in the complex with oxidized Pdx. It is also possible that the water-mediated hydrogen-bonding interactions support a high P450cam affinity for reduced (Ka = 0.83 µM-1) relative to oxidized (Ka = 0.058 µM-1) Pdx. This study points to a novel role of solvents in assisting redox state-dependent interaction between P450cam and Pdx.


* This work was supported by a Grant-in-aid for Scientific Research on Priority Areas from the Ministry of Education, Science, Sports, and Culture of Japan 08249102 (to I. M.).The costs of publication of this article were defrayed in part by the payment of page charges. The article must therefore be hereby marked "advertisement" in accordance with 18 U.S.C. Section 1734 solely to indicate this fact.

Dagger To whom correspondence should be addressed: Dept. of Molecular Engineering, Graduate School of Engineering, Kyoto University, Kyoto 606-8501, Japan. Tel.: 81-75-753-5921; Fax: 81-75-751-7611; E-mail: morisima@mds.moleng.kyoto-u.ac.jp.


Copyright © 2001 by The American Society for Biochemistry and Molecular Biology, Inc.
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