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1.
Mol Microbiol ; 53(3): 829-42, 2004 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-15255896

RESUMO

Spo0A, the response regulator protein controlling the initiation of sporulation in Bacillus, has two distinct domains, an N-terminal phosphoacceptor (or receiver) domain and a C-terminal DNA-binding (or effector) domain. The phosphoacceptor domain mediates dimerization of Spo0A on phosphorylation. A comparison of the crystal structures of phosphorylated and unphosphorylated response regulators suggests a mechanism of activation in which structural changes originating at the phosphorylatable aspartate extend to the alpha4beta5alpha5 surface of the protein. In particular, the data show an important role in downstream signalling for a conserved aromatic residue (Phe-105 in Spo0A), the conformation of which alters upon phosphorylation. In this study, we have prepared a Phe-105 to Ala mutant to probe the contribution of this residue to Spo0A function. We have also made an alanine substitution of the neighbouring residue Tyr-104 that is absolutely conserved in the Spo0As of spore-forming Bacilli. The spo0A(Y104A) and spo0A(F105A) alleles severely impair sporulation in vivo. In vitro phosphorylation of the purified proteins by phosphoramidate is unaffected, but dimerization and DNA binding are abolished by the mutations. We have identified intragenic suppressor mutations of spo0A(F105A) and shown that these second-site mutations in the purified proteins restore phosphorylation-dependent dimer formation. Our data support a model in which dimerization and signal transduction between the two domains of Spo0A are mediated principally by the alpha4beta5alpha5 signalling surface in the receiver domain.


Assuntos
Bacillus subtilis/fisiologia , Proteínas de Bactérias/fisiologia , Transdução de Sinais/fisiologia , Fatores de Transcrição/fisiologia , Bacillus subtilis/genética , Proteínas de Bactérias/química , Proteínas de Bactérias/genética , Sequência de Bases , Primers do DNA , Dimerização , Metanossulfonato de Etila/farmacologia , Modelos Moleculares , Mutagênese , Mutagênese Sítio-Dirigida , Fosforilação , Plasmídeos/genética , Conformação Proteica , Proteínas Recombinantes/química , Proteínas Recombinantes/metabolismo , Esporos Bacterianos/fisiologia , Fatores de Transcrição/química , Fatores de Transcrição/genética , Difração de Raios X
2.
Anal Biochem ; 299(1): 31-6, 2001 Dec 01.
Artigo em Inglês | MEDLINE | ID: mdl-11726181

RESUMO

Bacterial response regulators are attractive targets for antibacterial drug development, yet random screening against these targets has failed as yet to identify chemicals that constitute viable leads. Alternative methods to provide leads for drug development based on identification and optimization of low affinity ligands from NMR screens have been described. However, leads from these processes still require verification in a bioassay, which is often problematic if compounds have unfavorable optical and solubility properties. A simple method, based on using NMR to observe the activity of the target, is described. It has the advantages of being able to characterize both low affinity leads and a wider selection of compounds in a structure activity relationships series, without the problems affecting a fluorescence assay. In this example we use (31)P to monitor the turnover of a bacterial response regulator, but the generic approach could be applied to other nuclei and thus a range of biological systems.


Assuntos
Proteínas de Bactérias/metabolismo , Cálcio/metabolismo , Magnésio/metabolismo , Proteínas de Membrana/metabolismo , Ressonância Magnética Nuclear Biomolecular/métodos , Antibacterianos/metabolismo , Antibacterianos/farmacologia , Proteínas de Bactérias/efeitos dos fármacos , Proteínas de Bactérias/isolamento & purificação , Catálise , Ácido Edético/metabolismo , Ligantes , Proteínas de Membrana/isolamento & purificação , Proteínas Quimiotáticas Aceptoras de Metil , Peso Molecular , Isótopos de Fósforo/metabolismo , Fosforilação/efeitos dos fármacos
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