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de Sá-Nogueira, I.  2007.  Regulação da Transcrição em Procariontes.. O mundo do RNA: novos desafios e perspectivas futuras. (CM Arraiano, A. Fialho, Eds.).:23-42.: Edições Técnicas Lidel
de Sanctis, D, Bento I, Inácio JM, Custódio S, de Sá-Nogueira I, Carrondo MA.  2008.  Overproduction, crystallization and preliminary X-ray characterization of Abn2, an endo-1,5-α-arabinanase from Bacillus subtilis Acta Crystallographica Section F. 64:636–638., Number 7 Abstract

Two Bacillus subtilis extracellular endo-1,5-α-L-arabinanases, AbnA and Abn2, belonging to glycoside hydrolase family 43 have been identified. The recently characterized Abn2 protein hydrolyzes arabinan and has low identity to other reported 1,5-α-L-arabinanases. Abn2 and its selenomethionine (SeMet) derivative have been purified and crystallized. Crystals appeared in two different space groups: P1, with unit-cell parameters a = 51.9, b = 57.6, c = 86.2 Å, α = 82.3, β = 87.9, ɣ = 63.6°, and P212121, with unit-cell parameters a = 57.9, b = 163.3, c = 202.0 Å. X-ray data have been collected for the native and the SeMet derivative to 1.9 and 2.7 Å resolution, respectively. An initial model of Abn2 is being built in the SeMet-phased map.

de Sanctis, D, Inácio JM, Lindley PF, de Sá-Nogueira I, Bento I.  2010.  New evidence for the role of calcium in the glycosidase reaction of GH43 arabinanases. FEBS Journal. 277:4562-4574. Abstract

Endo-1,5-α-L-arabinanases are glycosyl hydrolases that are able to cleave the glycosidic bonds of α-1,5-L-arabinan, releasing arabino-oligosaccharides and L-arabinose. Two extracellular endo-1,5-α-L-arabinanases have been isolated from Bacillus subtilis, BsArb43A and BsArb43B (formally named AbnA and Abn2, respectively). BsArb43B shows low sequence identity with previously characterized 1,5-α-L-arabinanases and is a much larger enzyme. Here we describe the 3D structure of native BsArb43B, biochemical and structure characterization of two BsArb43B mutant proteins (H318A and D171A), and the 3D structure of the BsArb43B D171A mutant enzyme in complex with arabinohexose. The 3D structure of BsArb43B is different from that of other structurally characterized endo-1,5-α-L-arabinanases, as it comprises two domains, an N-terminal catalytic domain, with a 3D fold similar to that observed for other endo-1,5-α-L-arabinanases, and an additional C-terminal domain. Moreover, this work also provides experimental evidence for the presence of a cluster containing a calcium ion in the catalytic domain, and the importance of this calcium ion in the enzymatic mechanism of BsArb43B.

dos Santos, R, Rocha A, Matias A, Duarte C, de Sá-Nogueira I, Lourenco N, Borges JP, Vidinha P.  2013.  Development of antimicrobial Ion Jelly fibers. RSC Adv.. 3:24400-24405.: The Royal Society of Chemistry Abstract

We report a method to obtain electrospun fibers based on ionic liquids and gelatin, exhibiting antimicrobial properties.

Spencer-Martins, I, de Sá-Nogueira I.  2003.  Biotecnologia microbiana. Biotecnologia. (N. Lima, M. Mota, Eds.).:249-265.: Ediçõs Técnicas Lidel