A mutated version of the hygromycin B phosphotransferase (hph(mut)) gene from Escherichia coli, isolated by directed evolution at 75 degrees C in transformants of a thermophilic strain of Sulfolobus solfataricus, was characterized with respect to its genetic stability in both the original mesophilic and the new thermophilic hosts. This gene was demonstrated to be able to express the hygromycin B resistance phenotype and to be steadily maintained and propagated also in other, more thermophilic strains of S. solfataricus, i.e., up to 82 degrees C. Furthermore, it may be transferred to S. solfataricus cells by cotransformation with pKMSD48, another extrachromosomal element derived from the virus SSV1 of Sulfolobus shibatae, without any loss of stability and without affecting the replication and infectivity of this viral DNA. The hph(mut) and the wild-type gene products were expressed at higher levels in E. coli and purified by specific affinity chromatography on immobilized hygromycin B. Comparative characterization revealed that the mutant enzyme had acquired significant thermoresistance and displayed higher thermal activity with augmented catalytic efficiency.

Thermoadaptation of a mesophilic hygromycin B phosphotransferase by directed evolution in hyperthermophilic Archaea: selection of a stable genetic marker for DNA transfer into Sulfolobus solfataricus

Cannio R;Rossi M;
2001

Abstract

A mutated version of the hygromycin B phosphotransferase (hph(mut)) gene from Escherichia coli, isolated by directed evolution at 75 degrees C in transformants of a thermophilic strain of Sulfolobus solfataricus, was characterized with respect to its genetic stability in both the original mesophilic and the new thermophilic hosts. This gene was demonstrated to be able to express the hygromycin B resistance phenotype and to be steadily maintained and propagated also in other, more thermophilic strains of S. solfataricus, i.e., up to 82 degrees C. Furthermore, it may be transferred to S. solfataricus cells by cotransformation with pKMSD48, another extrachromosomal element derived from the virus SSV1 of Sulfolobus shibatae, without any loss of stability and without affecting the replication and infectivity of this viral DNA. The hph(mut) and the wild-type gene products were expressed at higher levels in E. coli and purified by specific affinity chromatography on immobilized hygromycin B. Comparative characterization revealed that the mutant enzyme had acquired significant thermoresistance and displayed higher thermal activity with augmented catalytic efficiency.
2001
Istituto di Biochimica delle Proteine - IBP - Sede Napoli
5
153
159
Genetica manipolativa
Sulfolobus solfataricus
Termoadattamento
Trasformazione
Sistemi genetici
Il lavoro è stato pubblicato dopo giudizio di referees internazionali su una rivista di notevole diffusione internazionale e di prestigio per quanto riguarda la biologia degli organismi estremofili. La pubblicazione testimonia una larga interdisciplinarietà ed è pionieristica per ciò che concerne la genetica molecolare, microbiologia e chimica delle proteine di organismi archaeali ipertermofili. Infatti é il risultato del successo nel campo dell’ ingegneria genetica e proteica di enzimi ad elevato potenziale applicativo, ed, in quello strutturale, dell’individuazione di motivi strutturali modificabili per l’ottimizzazione dell’ efficienza catalitica degli estremozimi. I risultati descritti hanno dato impulso allo studio di nuovi sistemi genetici adatti come veicoli per il trasferimento e l’espressione di geni di varia origine in questi microrganismi come indicato dalle svariate citazioni in pubblicazioni scientifiche di altri autori. Impact Factor 2.291.
2
info:eu-repo/semantics/article
262
Cannio R.; Contursi P.; Rossi M.; Bartolucci S..
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/20.500.14243/122370
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