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Biophys J, July 2000, p. 394-405, Vol. 79, No. 1
Department of Chemistry, Biophysics Program and *The
Ohio State Biochemistry Program, The Ohio State University,
Columbus, Ohio 43210 USA
The "cubic phase method" for growing crystals of
membrane proteins uses a complex mixture of water, lipid, protein, and
other components. The current view is that the cubic phase is integral to the process. Thus additives from whatever source introduce the
possibility of destabilizing the phase, thereby compromising the
crystallization process. Detergents are used to solubilize membrane
proteins and are likely to be ported into the cubic medium with the
target protein. Depending on the identity and concentration of the
detergent, the cubic phase, which itself is membranous, may be
solubilized or destabilized in such a way as to render it unsuitable as
a crystal growing system. The nonionic detergent n-dodecyl-
-D-maltopyranoside is commonly
used in membrane protein work. In this study, we evaluate its effect on
the cubic mesophase of hydrated monoolein. X-ray diffraction was used
for phase identification and mesophase microstructure characterization.
The results show that while low levels of the detergent are tolerated,
increasing concentrations trigger a cubic-to-lamellar phase transition
in a temperature-dependent manner. This finding is rationalized in the
context of complementary molecular shapes of the lipid and the
detergent and has implications for the mechanism of crystallization in
lipidic mesophases as discussed.
Biophys J, July 2000, p. 394-405, Vol. 79, No. 1
© 2000 by the Biophysical Society 0006-3495/00/07/394/12 $2.00
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