Conformational Changes in SP-B as a Function of Surface Pressure

X-ray reflectivity of bovine and sheep surfactant-associated protein B (SP-B) monolayers is used in conjunction with pressure-area isotherms and protein models to suggest that the protein undergoes changes in its tertiary structure at the air/water interface under the influence of surface pressure,...

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Veröffentlicht in:Biophysical journal 2003-10, Vol.85 (4), p.2624-2632
Hauptverfasser: Fullagar, Wilfred K., Aberdeen, Karen A., Bucknall, David G., Kroon, Paulus A., Gentle, Ian R.
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Sprache:eng
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Zusammenfassung:X-ray reflectivity of bovine and sheep surfactant-associated protein B (SP-B) monolayers is used in conjunction with pressure-area isotherms and protein models to suggest that the protein undergoes changes in its tertiary structure at the air/water interface under the influence of surface pressure, indicating the likely importance of such changes to the phenomena of protein squeeze out as well as lipid exchange between the air-water interface and subphase structures. We describe an algorithm based on the well-established box- or layer-models that greatly assists the fitting of such unknown scattering-length density profiles, and which takes the available instrumental resolution into account. Scattering-length density profiles from neutron reflectivity of bovine SP-B monolayers on aqueous subphases are shown to be consistent with the exchange of a large number of labile protons as well as the inclusion of a significant amount of water, which is partly squeezed out of the protein monolayer at elevated surface pressures.
ISSN:0006-3495
0300-8177
1542-0086
1573-4919
DOI:10.1016/S0006-3495(03)74685-2