4.4 Article

Heme attachment motif mobility tunes cytochrome c redox potential

期刊

BIOCHEMISTRY
卷 46, 期 42, 页码 11753-11760

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AMER CHEMICAL SOC
DOI: 10.1021/bi701177j

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  1. NIGMS NIH HHS [R01 GM063170, GM63170, R01 GM063170-07, R01 GM063170-06] Funding Source: Medline

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Hydrogen exchange (HX) rates and midpoint potentials (E-m) of variants of cytochrome c from Pseudomonas aeruginosa (Pa cyt C-551) and Hydrogenobacter thermophilus (Ht cyt C-552) have been characterized in an effort to develop an understanding of the impact. of properties of the Cys-X-X-Cys-His pentapeptide c-heme attachment (CXXCH) motif on heme redox potential. Despite structural conservation of the CXXCH motif, Ht cyt C-552 exhibits a low level of protection from HX for amide protons within this motif relative to Pa cyt C-551. Site-directed mutants have been prepared to determine the structural basis for and functional implications of these variations on HX behavior. The double mutant Ht-M13V/K22M displays suppressed HX within the CXXCH motif as well as a decreased E-m (by 81 mV), whereas the corresponding double mutant of Pa cyt C-551 (V13M/M22K) exhibits enhanced HX within the CXXCH pentapeptide and a modest increase in E-m (by 30 mV). The changes in E-m correlate with changes in axial His chemical shifts in the ferric proteins reflecting the extent of histidinate character. Thus, the mobility of the CXXCH pentapeptide is found to impact the His-Fe(III) interaction and therefore the heme redox potential.

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