The analysis of the complete genome of the thermoacidophilic Archaeon Sulfolobus solfataricus revealed two open reading frames (ORF), named SSO11867 and SSO3060, interrupted by a -1 frameshift and encoding for the N- and the C-terminal fragments, respectively, of an alpha-l-fucosidase. We report here that these ORFs are actively transcribed in vivo, and we confirm the presence of the -1 frameshift between them at the cDNA level, explaining why we could not find alpha-fucosidase activity in S. solfataricus extracts. Detailed analysis of the region of overlap between the two ORFs revealed the presence of the consensus sequence for a programmed -1 frameshifting. Two specific mutations, mimicking this regulative frameshifting event, allow the expression, in Escherichia coli, of a fully active thermophilic and thermostable alpha-l-fucosidase (EC ) with micromolar substrate specificity and showing transfucosylating activity. The analysis of the fucosylated products of this enzyme allows, for the first time, assigning a retaining reaction mechanism to family 29 of glycosyl hydrolases. The presence of an alpha-fucosidase putatively regulated by programmed -1 frameshifting is intriguing both with respect to the regulation of gene expression and, in post-genomic era, for the definition of gene function in Archaea.

Identification of an archaeal alpha-L-fucosidase encoded by an interrupted gene. Production of a functional enzyme by mutations mimicking programmed -1 frameshifting.

CobucciPonzano B;Giordano A;Moracci M
2003

Abstract

The analysis of the complete genome of the thermoacidophilic Archaeon Sulfolobus solfataricus revealed two open reading frames (ORF), named SSO11867 and SSO3060, interrupted by a -1 frameshift and encoding for the N- and the C-terminal fragments, respectively, of an alpha-l-fucosidase. We report here that these ORFs are actively transcribed in vivo, and we confirm the presence of the -1 frameshift between them at the cDNA level, explaining why we could not find alpha-fucosidase activity in S. solfataricus extracts. Detailed analysis of the region of overlap between the two ORFs revealed the presence of the consensus sequence for a programmed -1 frameshifting. Two specific mutations, mimicking this regulative frameshifting event, allow the expression, in Escherichia coli, of a fully active thermophilic and thermostable alpha-l-fucosidase (EC ) with micromolar substrate specificity and showing transfucosylating activity. The analysis of the fucosylated products of this enzyme allows, for the first time, assigning a retaining reaction mechanism to family 29 of glycosyl hydrolases. The presence of an alpha-fucosidase putatively regulated by programmed -1 frameshifting is intriguing both with respect to the regulation of gene expression and, in post-genomic era, for the definition of gene function in Archaea.
2003
Istituto di Biochimica delle Proteine - IBP - Sede Napoli
278
14622
14631
Alpha-fucosidasi
Sulfolobus solfataricus
Glicosil-idrolasi
Trans-glicosilazione
Frameshifting
L’enzima identificato in questo lavoro e la cui caratterizzazione è stata pubblicata sulla prestigiosa rivista internazionale J.of Biological Chemistry rappresenta a tutt’oggi l’unica alpha-fucosidasi identificata in un archaeobatterio. L’enzima sintetico ottenuto a partire da open reading frames (ORF) separate da uno scivolamento della fase di lettura apre una finestra sulla possibilità della presenza del meccanismo di regolazione dell’espressione genica noto come frameshifting programmato –1 negli Archaea. Inoltre, il metodo utilizzato per l’ottenimento dell’enzima sintetico dalle due ORF è stato brevettato nel 2002 (RM2002A000550 del 31/10/02). Infine, questi dati sono stati oggetto delle presentazione orale di Beatrice Cobucci-Ponzano “Genomic and mutational analyses reveal that the first archaeal alpha-L-fucosidase is putatively regulated by programmed –1 frameshifting” nell’ambito del convegno “5th Carbohydrate Bioengineering Meeting” Olanda 6-9 April 2003. Impact Factor 7.258.
5
info:eu-repo/semantics/article
262
Cobucciponzano, B; Trincone, A; Giordano, A; Rossi, M; Moracci, M
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/122407
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