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1.
Mol Biol Evol ; 29(8): 2039-46, 2012 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-22355012

RESUMO

Myeloperoxidase (MPO) is a member of the mammalian heme peroxidase (MHP) multigene family. Whereas all MHPs oxidize specific halides to generate the corresponding hypohalous acid, MPO is unique in its capacity to oxidize chloride at physiologic pH to produce hypochlorous acid (HOCl), a potent microbicide that contributes to neutrophil-mediated host defense against infection. We have previously resolved the evolutionary relationships in this functionally diverse multigene family and predicted in silico that positive Darwinian selection played a major role in the observed functional diversities (Loughran NB, O'Connor B, O'Fagain C, O'Connell MJ. 2008. The phylogeny of the mammalian heme peroxidases and the evolution of their diverse functions. BMC Evol Biol. 8:101). In this work, we have replaced positively selected residues asparagine 496 (N496), tyrosine 500 (Y500), and leucine 504 (L504) with the amino acids present in the ancestral MHP and have examined the effects on the structure, biosynthesis, and activity of MPO. Analysis in silico predicted that N496F, Y500F, or L504T would perturb hydrogen bonding in the heme pocket of MPO and thus disrupt the structural integrity of the enzyme. Biosynthesis of the mutants stably expressed in human embryonic kidney 293 cells yielded apoproMPO, the heme-free, enzymatically inactive precursor of MPO, that failed to undergo normal maturation or proteolytic processing. As a consequence of the maturational arrest at the apoproMPO stage of development, cells expressing MPO with mutations N496F, Y500F, L504T, individually or in combination, lacked normal peroxidase or chlorinating activity. Taken together, our data provide further support for the in silico predictions of positive selection and highlight the correlation between positive selection and functional divergence. Our data demonstrate that directly probing the functional importance of positive selection can provide important insights into understanding protein evolution.


Assuntos
Mutagênese/genética , Peroxidase/genética , Seleção Genética , Biologia Computacional , Células HEK293 , Halogenação , Heme/metabolismo , Humanos , Proteínas Mutantes/metabolismo , Mutação/genética , Peroxidase/biossíntese , Peroxidase/química , Peroxidases/genética , Filogenia
2.
J Innate Immun ; 6(3): 353-64, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24247266

RESUMO

To establish infection successfully, Staphylococcus aureus must evade clearance by polymorphonuclear neutrophils (PMN). We studied the expression and regulation of the methionine sulfoxide reductases (Msr) that are involved in the repair of oxidized staphylococcal proteins and investigated their influence on the fate of S. aureus exposed to oxidants or PMN. We evaluated a mutant deficient in msrA1 and msrB for susceptibility to hydrogen peroxide, hypochlorous acid and PMN. The expression of msrA1 in wild-type bacteria ingested by human PMN was assessed by real-time PCR. The regulation of msr was studied by screening a library of two-component regulatory system (TCS) mutants for altered msr responses. Relative to the wild-type bacteria, bacteria deficient in Msr were more susceptible to oxidants and PMN. Upregulation of staphylococcal msrA1 occurred within the phagosomes of normal PMN and PMN deficient in NADPH oxidase activity. Furthermore, PMN granule-rich extract stimulated the upregulation of msrA1. Modulation of msrA1 within PMN was shown to be partly dependent on the VraSR TCS. Msr contributes to staphylococcal responses to oxidative attack and PMN. Our study highlights a novel interaction between the oxidative protein repair pathway and the VraSR TCS that is involved in cell wall homeostasis.


Assuntos
Proteínas de Bactérias/metabolismo , Metionina Sulfóxido Redutases/metabolismo , Neutrófilos/imunologia , Infecções Estafilocócicas/imunologia , Staphylococcus aureus/fisiologia , Proteínas de Bactérias/genética , Parede Celular/metabolismo , Células Cultivadas , Proteínas de Ligação a DNA/metabolismo , Regulação da Expressão Gênica/imunologia , Humanos , Peróxido de Hidrogênio/metabolismo , Ácido Hipocloroso/metabolismo , Evasão da Resposta Imune/genética , Metionina Sulfóxido Redutases/genética , Mutação/genética , Neutrófilos/microbiologia , Oxidantes/metabolismo , Estresse Oxidativo/genética , Infecções Estafilocócicas/enzimologia
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