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The structures of the active center in dark-adapted bacteriorhodopsin by solution-state NMR spectroscopy.


ABSTRACT: The two forms of bacteriorhodopsin present in the dark-adapted state, containing either all-trans or 13-cis,15-syn retinal, were examined by using solution state NMR, and their structures were determined. Comparison of the all-trans and the 13-cis,15-syn forms shows a shift in position of about 0.25 A within the pocket of the protein. Comparing this to the 13-cis,15-anti chromophore of the catalytic cycle M-intermediate structure, the 13-cis,15-syn form demonstrates a less pronounced up-tilt of the retinal C12[bond]C14 region, while leaving W182 and T178 essentially unchanged. The N[bond]H dipole of the Schiff base orients toward the extracellular side in both forms, however, it reorients toward the intracellular side in the 13-cis,15-anti configuration to form the catalytic M-intermediate. Thus, the change of the N[bond]H dipole is considered primarily responsible for energy storage, conformation changes of the protein, and the deprotonation of the Schiff base. The structural similarity of the all-trans and 13-cis,15-syn forms is taken as strong evidence for the ion dipole dragging model by which proton (hydroxide ion) translocation follows the change of the dipole.

SUBMITTER: Patzelt H 

PROVIDER: S-EPMC125008 | biostudies-literature | 2002 Jul

REPOSITORIES: biostudies-literature

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The structures of the active center in dark-adapted bacteriorhodopsin by solution-state NMR spectroscopy.

Patzelt Heiko H   Simon Bernd B   terLaak Antonius A   Kessler Brigitte B   Kühne Ronald R   Schmieder Peter P   Oesterhelt Dieter D   Oschkinat Hartmut H  

Proceedings of the National Academy of Sciences of the United States of America 20020715 15


The two forms of bacteriorhodopsin present in the dark-adapted state, containing either all-trans or 13-cis,15-syn retinal, were examined by using solution state NMR, and their structures were determined. Comparison of the all-trans and the 13-cis,15-syn forms shows a shift in position of about 0.25 A within the pocket of the protein. Comparing this to the 13-cis,15-anti chromophore of the catalytic cycle M-intermediate structure, the 13-cis,15-syn form demonstrates a less pronounced up-tilt of  ...[more]

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