Levansucrases from Pseudomonas syringae pv. tomato and P. chlororaphis subsp. aurantiaca: Substrate specificity, polymerizing properties and usage of different acceptors for fructosylation

► Levansucrases of pseudomonads transfructosylate many nonconventional acceptor sugars. ► Transfructosylation yields heterooligofructans with degree of polymerization up to 5. ► His321 and Thr302 are polymerization determinants of Lsc3 protein of P. syringae. ► LscA and Lsc3 have similar properties,...

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Veröffentlicht in:Journal of biotechnology 2011-09, Vol.155 (3), p.338-349
Hauptverfasser: Visnapuu, Triinu, Mardo, Karin, Mosoarca, Cristina, Zamfir, Alina D., Vigants, Armands, Alamäe, Tiina
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Sprache:eng
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Zusammenfassung:► Levansucrases of pseudomonads transfructosylate many nonconventional acceptor sugars. ► Transfructosylation yields heterooligofructans with degree of polymerization up to 5. ► His321 and Thr302 are polymerization determinants of Lsc3 protein of P. syringae. ► LscA and Lsc3 have similar properties, but different activity and products pattern. ► Chip-based nanoESI MS allows rapid detection and specification of heterooligofructans. Levansucrases of Pseudomonas syringae pv. tomato DC3000 (Lsc3) and Pseudomonas chlororaphis subsp. aurantiaca (also Pseudomonas aurantiaca) (LscA) have 73% identity of protein sequences, similar substrate specificity and kinetic properties. Both enzymes produce levan and fructooligosaccharides (FOS) of varied length from sucrose, raffinose and sugar beet molasses. A novel high-throughput chip-based nanoelectrospray mass spectrometric method was applied to screen alternative fructosyl acceptors for levansucrases. Lsc3 and LscA could both transfructosylate d-xylose, d-fucose, l- and d-arabinose, d-ribose, d-sorbitol, xylitol, xylobiose, d-mannitol, d-galacturonic acid and methyl-α- d-glucopyranoside and heterooligofructans with degree of polymerization up to 5 were detected. The ability of d-sorbitol, xylobiose, d-galacturonic acid, d-mannitol, xylitol and methyl-α- d-glucopyranoside to serve as fructosyl acceptors for levansucrases is shown for the first time. Expectedly, site-directed mutagenesis of His321 in Lsc3 to Arg, Lys, Leu and Ser resulted in proteins with decreased catalytic activity, affinity for sucrose and polymerizing ability. Random mutagenesis yielded a Lsc3 mutant Thr302Pro with reduced synthesis of levan and long-chain FOS. Thr302 is located in conserved DQTERP region of levansucrases adjacent to predicted acid-base catalyst Glu303. Thr302 and His321 are predicted to belong to +1 subsite of the substrate binding region of Lsc3.
ISSN:0168-1656
1873-4863
DOI:10.1016/j.jbiotec.2011.07.026