0000000000969976

AUTHOR

G Renzone

showing 11 related works from this author

A "fat" Streptomycete strain overproduces antibiotics

Streptomyces coelicolor antibiotics proteomic analysis undecylprodigiosin streptorubin B morpho-physiological differentiation fatty acidsSettore BIO/19 - Microbiologia Generale
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Differential proteomics highlights metabolic changes associated with n-hexadecane utilization in a Streptomyces coelicolor strain expressing Gordonia…

2011

Introduction: Alkanes are biodegraded to generate the corresponding primary alcohol trough alkane hydroxylases (AHs) consisting on an integral membrane alkane monooxygenase (AlkB) and two soluble proteins, rubredoxin and rubredoxin reductase. Recently, an alkB gene was reported to be involved in degradation of long chain n-alkanes in the actinobacterium Gordonia sp. SoCg. This gene was expressed in Streptomyces coelicolor M145 which is unable to degrade n-alkanes. Results: The engineered strain, M145-AH, can biotransform n-hexadecane into the corresponding 1-hexadecanol and it is able to grow on n-hexadecane as sole carbon source. Changes in global protein expression associated with n-hexad…

StreptomyceHydrocarbonn-alkaneGordoniaSettore BIO/19 - Microbiologia Generalebiodegradation
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Gordonia sp. SoCg alkB gene confers the ability to degrade and use n-alkanes as carbon source in Gram positive bacteria

2010

Gordonia sp. SoCg, a Gram positive strain able to grow on long chain n-alkanes1, possess a single copy of alkB2 gene, whose product is required for n-alkane hydroxylation3. An analysis of alkB flanking regions revealed five ORFs which were designed as orf1, rubA3, rubA4, rubB and alkU, according to the sequence 14 homology with that of known alk clusters3. In G. sp. SoCg the transcription of these genes was induced by long-chain and solid n-alkanes as revealed by quantitative RT-PCR, and the essential role of alkB in nalkane degradation was demonstrated by the construction of an alkB disruption mutant strain3. The SoCg alkB gene was successfully expressed in Streptomyces coelicolor M145 (M1…

long-chain n-alkanes Gordonia sp. Streptomyces sp. 2D-DIGEalk genesSettore BIO/19 - Microbiologia Generaleproteomic
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PROTEOMIC ANALYSIS OF AMYCOLATOPSIS BALHIMYCINA TO REVEAL NOVEL LINKS BETWEEN PRIMARY AND SECONDARY METABOLISM.

2007

secondary metabolismProteomic analysis of Amycolatopsis balhimycina
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Proteomic investigations to unravel molecular physiology of the lantibiotic producer Microbispora sp. ATCC‐PTA‐5024

2013

Actinomycetes Lantibiotics Proteomics 2D-DIGE Mass spectrometry
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A proteomic investigation to explore biochemical capabilities of a lantibiotic producer Microbispora strain

2011

lantibioticMicrobisporaSettore BIO/19 - Microbiologia Generaleproteomic
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Microbispora sp. proteomic analysis to study metabolic pathway changes during lantibiotic production

2011

Lantibiotic Microbispora proteome
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Having a look at Microbispora sp. ATCC-PTA-5024, a lantibiotic producer, "from the cradle to the grave" at the proteome level

2012

lantibioticproteomicsMicrobispora sp. ATCC‐PTA‐5024Settore BIO/19 - Microbiologia Generale
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Primary and secondary metabolism gene expression in Amycolatopsis balhimycina

2009

Settore BIO/19 - Microbiologia GeneraleAmycolatopsis proteome analysis
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Unraveling the functional role of Streptomyces coelicolor trpX, an intriguing small orf

2013

ProteomicsAntibioticsActinomycetesProteomics Actinomycetes Antibiotics
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Microbispora sp. ATCC-PTA-5024 proteomic analysis to study metabolic pathway changes before and during lantibiotic production

2011

proteomic analysiMicrobispora sp. ATCC-PTA-5024lantibiotic productionSettore BIO/19 - Microbiologia Generale
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