Hofmeister salt effects on surface tension arise from partitioning of anions and cations between bulk water and the air-water interface

被引:402
作者
Pegram, Laurel M.
Record, M. Thomas, Jr.
机构
[1] Univ Wisconsin, Dept Chem, Madison, WI 53706 USA
[2] Univ Wisconsin, Dept Biochem, Madison, WI 53706 USA
关键词
D O I
10.1021/jp070245z
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We apply a recently developed surface-bulk partitioning model to interpret the effects of individual Hofmeister cations and anions on the surface tension of water. The most surface-excluded salt (Na2SO4) provides a minimum estimate for the number of water molecules per unit area of the surface region of 0.2 H2O angstrom(-2). This corresponds to a lower bound thickness of the surface region of similar to 6 angstrom, which we assume is a property of this region and not of the salt investigated. At salt concentrations less than or similar to 1 m, single-ion partition coefficients K-p,K-i, defined relative to K-p,K-Na+ = K-p,K-SO42- = 0, are found to be independent of bulk salt concentration and additive for different salt ions. Semiquantitative agreement with surface-sensitive spectroscopy data and molecular dynamics simulations is attained. In most cases, the rank orders of K-p,K-i for both anions and cations follow the conventional Hofmeister series, qualitative rankings of ions based on their effects on protein processes ( folding, precipitation, assembly). Most anions that favor processes that expose protein surface to water (e.g., SCN-), and hence must interact favorably with (i.e., accumulate at) protein surface, are also accumulated at the air-water interface (K-p > 1, e.g., K-p,K-SCN- = 1.6). Most anions that favor processes that remove protein surface from water (e.g., F-), and hence are excluded from protein surface, are also excluded from the air-water interface (K-p,K-F- = 0.5). The guanidinium cation, a strong protein denaturant and therefore accumulated at the protein surface exposed in unfolding, is somewhat excluded from the air-water surface (K-p,K-GuH+ = 0.7), but is much less excluded than alkali metal cations (e.g., K-p,K-Na+ = 0, K-p,K-K+ = 0.1). Hence, cation K-p values for the air-water surface appear shifted ( toward exclusion) as compared with values inferred for interactions of these cations with protein surface.
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页码:5411 / 5417
页数:7
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共 52 条
[1]   MECHANISM OF PROTEIN SALTING IN AND SALTING OUT BY DIVALENT-CATION SALTS - BALANCE BETWEEN HYDRATION AND SALT BINDING [J].
ARAKAWA, T ;
TIMASHEFF, SN .
BIOCHEMISTRY, 1984, 23 (25) :5912-5923
[2]   PREFERENTIAL INTERACTIONS OF PROTEINS WITH SALTS IN CONCENTRATED-SOLUTIONS [J].
ARAKAWA, T ;
TIMASHEFF, SN .
BIOCHEMISTRY, 1982, 21 (25) :6545-6552
[3]   Metrics that differentiate the origins of osmolyte effects on protein stability: A test of the surface tension proposal [J].
Auton, Matthew ;
Ferreon, Allan Chris M. ;
Bolen, D. Wayne .
JOURNAL OF MOLECULAR BIOLOGY, 2006, 361 (05) :983-992
[4]   INTERFACIAL-TENSIONS AT ALKANE-AQUEOUS ELECTROLYTE INTERFACES [J].
AVEYARD, R ;
SALEEM, SM .
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS I, 1976, 72 :1609-1617
[5]   How Hofmeister ion interactions affect protein stability [J].
Baldwin, RL .
BIOPHYSICAL JOURNAL, 1996, 71 (04) :2056-2063
[6]   OSMOTIC AND ACTIVITY-COEFFICIENTS OF SOME GUANIDINIUM SALTS AT 298.15 K [J].
BONNER, OD .
JOURNAL OF CHEMICAL THERMODYNAMICS, 1976, 8 (12) :1167-1172
[7]   OSMOTIC AND ACTIVITY-COEFFICIENTS OF SOME SALTS HAVING RELATIVELY LARGE MOLAR VOLUMES [J].
BONNER, OD .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 1976, 21 (04) :498-499
[8]   Structure and vibrational spectroscopy of salt water/air interfaces: Predictions from classical molecular dynamics simulations [J].
Brown, EC ;
Mucha, M ;
Jungwirth, P ;
Tobias, DJ .
JOURNAL OF PHYSICAL CHEMISTRY B, 2005, 109 (16) :7934-7940
[9]   Experimental anion affinities for the air/water interface [J].
Cheng, Jie ;
Vecitis, Chad D. ;
Hoffmann, M. R. ;
Colussi, A. J. .
JOURNAL OF PHYSICAL CHEMISTRY B, 2006, 110 (51) :25598-25602
[10]   Thermodynamics of interactions of urea and guanidinium salts with protein surface: Relationship between solute effects on protein processes and changes in water-accessible surface area [J].
Courtenay, ES ;
Capp, MW ;
Record, MT .
PROTEIN SCIENCE, 2001, 10 (12) :2485-2497