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ELECTRIC DICHROISM OF PURPLE MEMBRANE SUSPENSIONS
Authors:Yoshiaki  Kimura  Akira  Ikegami  Koki  Ohno   Satoshi  Saigo Yasuaki  Takeuchi
Affiliation:Laboratory of Biophysics, The Institute of Physical and Chemical Research (RIKEN), Hirosawa, Wako-shi, Saitama 351;Department of Physics, Minamikawachi-machi, Tochigi-ken 329-04, Japan;Department of Biology Jichi Medical School, Minamikawachi-machi, Tochigi-ken 329-04, Japan
Abstract:Abstract— Suspensions of purple membranes were exposed to reversing rectangular pulses of relatively low electric field (less than 100V/cm) at various frequencies. Orientation of the membranes was estimated by measuring linear dichroism at 565nm. In the electric field of frequency lower than about 10Hz the purple membranes tended to align perpendicular to the electric field. This orientation was induced mostly by permanent dipole which was perpendicular to the membrane surface. The value of permanent dipole moment was determined to be 140D per protein at pH 7.0, 25°C, in the presence of 5m M phosphate buffer.
In an electric field of frequency more than 100Hz the membrane tended to align parallel to the electric field. Electric polarizability parallel to the membrane surface was estimated to be 1 ± 10−12 cm3 under the same conditions.
Electric dichroism of light-adapted and dark-adapted purple membranes was found to coincide with each other at high frequency. From this result the angle of retinal to the membrane surface was concluded to be the same between light-adapted and dark-adapted bacteriorhodopsins.
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