CCL

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001-es BibID:BIBFORM025194
Első szerző:Biró Sándor (molekuláris genetikus)
Cím:Transcriptional and functional analysis of the gene for factor C, an extracellular signal protein involved in cytodifferentiation of Streptomyces griseus / Sándor Biró, Zsuzsanna Birkó, Gilles P. van Wezel
Dátum:2000
Megjegyzések:Factor C is an extracellular signal protein involved in cellular differentiation in Streptomyces griseus. Nuclease S1 mapping experiments revealed that transcription of the gene takes place from a single promoter in a developmental-stage specific manner. The latter was also confirmed by in vivo promoter probing. The sequence of its promoter suggests that the gene is not transcribed by the major sigma factor. The cloned gene expressed from its own promoter in low- and high-copy-number vectors restored normal sporulation to a bald mutant of Streptomyces griseus. Computer analysis of the amino acid sequence revealed the presence of a transmembrane localization segment with the N-terminus positioned inside the cell. These data fit well into our working model that points at an important role for factor C in the morphogenesis of Streptomyces griseus.
Tárgyszavak:Természettudományok Biológiai tudományok idegen nyelvű folyóiratközlemény külföldi lapban
Megjelenés:Antonie Van Leeuwenhoek. - 78 : 3-4 (2000), p. 277-285. -
További szerzők:Hádáné Birkó Zsuzsanna (1971-) (molekuláris genetikus) Wezel, Gilles P., van
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001-es BibID:BIBFORM009630
Első szerző:Hádáné Birkó Zsuzsanna (molekuláris genetikus)
Cím:Lack of A-factor production induces the expression of nutrient scavenging and stress-related proteins in Streptomyces griseus / Birkó Zsuzsanna, Swiatek Magdalena, Szájli Emília, Medzihradszky F. Katalin, Vijgenboom Erik, Penyige András, Keserű Judit, van Wezel Gilles P., Biró Sándor
Dátum:2009
ISSN:1535-9476 (Print)
Megjegyzések:The small gamma-butyrolactone A-factor is an important autoregulatory signaling molecule for the soil-inhabiting streptomycetes. Starvation is a major trigger for development,and nutrients are provided by degradation of the vegetative mycelium via a process of programmed cell death, reusing proteins, nucleic acids, and cell wall material. The A-factor regulon includes many extracellular hydrolases. Here we show via proteomics analysis that many nutrientscavenging and stress-related proteins were overexpressed in an A-factor non-producing mutant of Streptomyces griseus B-2682. Transcript analysis showed that this is primarily due to differential transcription of the target genes during early development. The targets include proteins relating to nutrient stress and environmental stress and an orthologue of the Bacillus sporulation control protein Spo0M. The enhanced expression of these proteins underlines the stress that is generated by the absence of A-factor. Wild-type developmental gene expression was restored to the A-factor non-producing mutant by the signaling protein Factor C in line with our earlier observation that Factor C triggers A-factor production.
Tárgyszavak:Természettudományok Biológiai tudományok idegen nyelvű folyóiratközlemény külföldi lapban
C-faktor
Streptomyces griseus
proteomika
Megjelenés:Molecular and Cellular Proteomics : MCP - 8 : 10 (2009), p. 2396-2403. -
További szerzők:Swiatek, Magdalena Szájli Emília Medzihradszky-Fölkl Katalin Vijgenboom, Erik Penyige András (1954-) (molekuláris genetikus) Keserű Judit (1976-) (molekuláris genetikus) Wezel, Gilles P., van Biró Sándor (1949-) (molekuláris genetikus)
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3.

001-es BibID:BIBFORM001540
Első szerző:Hádáné Birkó Zsuzsanna (molekuláris genetikus)
Cím:The secreted signaling protein factor C triggers the A-factor response regulon in streptomyces griseus : overlapping signaling routes / Birkó Z., Bialek S., Buzás K., Szájli E., Traag B. A., Medzihradszky K. F., Rigali S., Vijgenboom E., Penyige A., Kele Z., van Wezel G. P., Bíró S.
Dátum:2007
Megjegyzések:Members of the prokaryotic genus Streptomyces produce over 60% of all known antibiotics and a wide range of industrial enzymes. A leading theme in microbiology is which signals are received and transmitted by these organisms to trigger the onset of morphological differentiation and antibiotic production. The small -butyrolactone A-factor is an important autoregulatory signaling molecule in streptomycetes, and A-factor mutants are blocked in development and antibiotic production. In this study we showed that heterologous expression of the 324-amino acid secreted regulatory protein Factor C resulted in restoration of development and enhanced antibiotic production of an A-factor-deficient bald mutant of Streptomyces griseus, although the parental strain lacks an facC gene. Proteome analysis showed that in the facC transformant the production of several secreted proteins that belong to the A-factor regulon was restored. HPLC-MS/MS analysis indicated that this was due to restoration of A-factor production to wild-type levels in the transformant. This indicates a connection between two highly divergent types of signaling molecules and possible interplay between their regulatory networks.
Tárgyszavak:Természettudományok Biológiai tudományok idegen nyelvű folyóiratközlemény külföldi lapban
Streptomyces szignalizáció
Megjelenés:Molecular and Cellular Proteomics : MCP - 6 : 7 (2007), p. 1248-1256. -
További szerzők:Bialek, Sylwia Buzás Krisztina Szájli Emília Traag, Bjorn A. Medzihradszky-Fölkl Katalin Rigali, Sebastien Vijgenboom, Erik Kele Zoltán Wezel, Gilles P., van Biró Sándor (1949-) (molekuláris genetikus) Penyige András (1954-) (molekuláris genetikus)
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