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Biophys. J. BioFAST: First Published February 24, 2006. doi:10.1529/biophysj.105.072520
© 2006 by the Biophysical Society.


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CHANNELS, RECEPTORS, AND ELECTRICAL SIGNALING

Deletion variants of Neurospora mitochondrial porin: Electrophysiological and spectroscopic analysis

Greg Runke 1, Elke Maier 2, William A.T. Summers 1, Denice C. Bay 1, Roland Benz 2 and Deborah A. Court 1*

1 University of Manitoba
2 Universität Würzburg

* To whom correspondence should be addressed. E-mail: dcourt{at}cc.umanitoba.ca.

Submitted on August 11, 2005
Revised on October 12, 2005
Accepted on 27 January 2006


   Abstract
Mitochondrial porins are predicted to traverse the outer membrane as a series of {beta}-strands, but the precise structure of the resulting {beta}-barrel has remained elusive. Toward determining the positions of the membrane-spanning segments, a series of small deletions was introduced into several of the predicted {beta}-strands of the Neurospora crassa porin. Overall, three classes of porin variants were identified: i) those producing large, stable pores, indicating deletions likely outside of {beta}-strands, ii) those with minimal pore-forming ability, indicating disruptions in key {beta}-strands or {beta}-turns and iii) those that formed small unstable pores with a variety of gating and ion-selectivity properties. The latter class presumably results from a subset of proteins that adopt an alternative barrel structure upon the loss of stabilizing residues. Some variants were not sufficiently stable in detergent for structural analysis; circular dichroism spectropolarimetry of those that were did not reveal significant differences in the overall structural composition among the detergent-solubilized porin variants and the wild-type protein. Several of the variants displayed altered tryptophan fluorescence profiles, indicative of differing microenvironments surrounding these residues. Based on these results, modifications to the existing models for porin structure are proposed.

Key Words: Neurospora, VDAC, circular dichroism, electrophysiology, fluorescence, mitochondrial porin




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D. C. Bay, J. D. O'Neil, and D. A. Court
Two-Step Folding of Recombinant Mitochondrial Porin in Detergent
Biophys. J., January 15, 2008; 94(2): 457 - 468.
[Abstract] [Full Text] [PDF]




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Copyright © 2006 by the Biophysical Society.