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J Biol Chem ; 287(24): 20382-94, 2012 Jun 08.
Artigo em Inglês | MEDLINE | ID: mdl-22505715

RESUMO

Analysis of the Gram-positive Clostridium acetobutylicum genome reveals an inexplicable level of redundancy for the genes putatively involved in asparagine (Asn) and Asn-tRNA(Asn) synthesis. Besides a duplicated set of gatCAB tRNA-dependent amidotransferase genes, there is a triplication of aspartyl-tRNA synthetase genes and a duplication of asparagine synthetase B genes. This genomic landscape leads to the suspicion of the incoherent simultaneous use of the direct and indirect pathways of Asn and Asn-tRNA(Asn) formation. Through a combination of biochemical and genetic approaches, we show that C. acetobutylicum forms Asn and Asn-tRNA(Asn) by tRNA-dependent amidation. We demonstrate that an entire transamidation pathway composed of aspartyl-tRNA synthetase and one set of GatCAB genes is organized as an operon under the control of a tRNA(Asn)-dependent T-box riboswitch. Finally, our results suggest that this exceptional gene redundancy might be interconnected to control tRNA-dependent Asn synthesis, which in turn might be involved in controlling the metabolic switch from acidogenesis to solventogenesis in C. acetobutylicum.


Assuntos
Asparagina/biossíntese , Aspartato-Amônia Ligase/biossíntese , Proteínas de Bactérias/biossíntese , Clostridium acetobutylicum/metabolismo , RNA Bacteriano/metabolismo , Aminoacil-RNA de Transferência/biossíntese , Riboswitch/fisiologia , Asparagina/genética , Aspartato-Amônia Ligase/genética , Proteínas de Bactérias/genética , Clostridium acetobutylicum/genética , RNA Bacteriano/genética , Aminoacil-RNA de Transferência/genética
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