» Articles » PMID: 12079384

Crystal Structures of the Met148Leu and Ser86Asp Mutants of Rusticyanin from Thiobacillus Ferrooxidans: Insights into the Structural Relationship with the Cupredoxins and the Multi Copper Proteins

Overview
Journal J Mol Biol
Publisher Elsevier
Date 2002 Jun 25
PMID 12079384
Citations 10
Authors
Affiliations
Soon will be listed here.
Abstract

The crystal structures of the Met148Leu and Ser86Asp mutants of rusticyanin are presented at 1.82 and 1.65 A resolution, respectively. Both of these structures have two molecules in the asymmetric unit compared to the one present in the crystal form of the native protein. This provides an opportunity to investigate intramolecular electron transfer pathways in rusticyanin. The redox potential of the Met148Leu mutant ( approximately 800 mV) is elevated compared to that of the native protein ( approximately 670 mV at pH 3.2) while that of the Ser86Asp mutant ( approximately 623 mV at pH 3.2) is decreased. The effect of the Ser86Asp mutation on the hydrogen bonding near the type 1 Cu site is discussed and hence its role in determining acid stability is examined. The type 1 Cu site of Met148Leu mimics the structural and biochemical characteristics of those found in domain II of ceruloplasmin and fungal laccase. Moreover, the native rusticyanin's cupredoxin core and the type 1 Cu site closely resemble those found in ascorbate oxidase and nitrite reductase. Structure based phylogenetic trees have been re-examined in view of the additional structural data on rusticyanin and fungal laccase. We confirm that rusticyanin is in the same class as nitrite reductase domain 2, laccase domain 3 and ceruloplasmin domains 2, 4 and 6.

Citing Articles

Predicting Reduction Potentials of Blue Copper Proteins Using Quantum Mechanical Calculations.

Dehabadi M, Irani M, Ryde U Inorg Chem. 2025; 64(8):3917-3929.

PMID: 39979212 PMC: 11881046. DOI: 10.1021/acs.inorgchem.4c05183.


Iron and sulfur oxidation pathways of Acidithiobacillus ferrooxidans.

Zhan Y, Yang M, Zhang S, Zhao D, Duan J, Wang W World J Microbiol Biotechnol. 2019; 35(4):60.

PMID: 30919119 DOI: 10.1007/s11274-019-2632-y.


Design and fine-tuning redox potentials of metalloproteins involved in electron transfer in bioenergetics.

Hosseinzadeh P, Lu Y Biochim Biophys Acta. 2015; 1857(5):557-581.

PMID: 26301482 PMC: 4761536. DOI: 10.1016/j.bbabio.2015.08.006.


Spectroscopic characterization of a green copper site in a single-domain cupredoxin.

Roger M, Biaso F, Castelle C, Bauzan M, Chaspoul F, Lojou E PLoS One. 2014; 9(6):e98941.

PMID: 24932914 PMC: 4059628. DOI: 10.1371/journal.pone.0098941.


Metalloproteins containing cytochrome, iron-sulfur, or copper redox centers.

Liu J, Chakraborty S, Hosseinzadeh P, Yu Y, Tian S, Petrik I Chem Rev. 2014; 114(8):4366-469.

PMID: 24758379 PMC: 4002152. DOI: 10.1021/cr400479b.