Structural and thermodynamic encoding in the sequence of rat microsomal cytochrome b5
β Scribed by Juliette T. J. Lecomte; Kunal Mukhopadhyay; Matthew P. Pond
- Book ID
- 102761801
- Publisher
- Wiley (John Wiley & Sons)
- Year
- 2008
- Tongue
- English
- Weight
- 545 KB
- Volume
- 89
- Category
- Article
- ISSN
- 0006-3525
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β¦ Synopsis
Abstract
The waterβsoluble domain of rat microsomal cytochrome b~5~ is a convenient protein with which to inspect the connection between amino acid sequence and thermodynamic properties. In the absence of its single heme cofactor, cytochrome b~5~ contains a partially folded stretch of Λ30 residues. This region is recognized as prone to disorder by programs that analyze primary structures for such intrinsic features. The cytochrome was subjected to amino acid replacements in the folded core (I12A), in the portion that refolds only when in contact with the heme group (N57P), and in both (F35H/H39A/L46Y). Despite the difficulties associated with measuring thermodynamic quantities for the hemeβbound species, it was possible to rationalize the energetic consequences of both types of replacements and test a simple equation relating apoprotein and holoprotein stability. In addition, a phenomenological relationship between the change in T~m~ (the temperature at the midpoint of the thermal transition) and the change in thermodynamic stability determined by chemical denaturation was observed that could be used to extend the interpretation of incomplete holoprotein stability data. Structural information was obtained by nuclear magnetic resonance spectroscopy toward an atomicβlevel analysis of the effects. Β© 2007 Wiley Periodicals, Inc. Biopolymers 89: 428β442, 2008.
This article was originally published online as an accepted preprint. The βPublished Onlineβ date corresponds to the preprint version. You can request a copy of the preprint by emailing the Biopolymers editorial office at [email protected]
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