Search Results - "Günther Muth"

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  1. 1

    Conjugative Plasmid Transfer in Gram-Positive Bacteria by GROHMANN, Elisabeth, MUTH, Günther, ESPINOSA, Manuel

    Published in Microbiology and Molecular Biology Reviews (01-06-2003)
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  2. 2

    Fluorescence microscopy of Streptomyces conjugation suggests DNA‐transfer at the lateral walls and reveals the spreading of the plasmid in the recipient mycelium by Thoma, Lina, Vollmer, Bernd, Muth, Günther

    Published in Environmental microbiology (01-02-2016)
    “…Conjugative DNA‐transfer in mycelial streptomycetes is a unique process, manifested on agar plates by the formation of circular growth retardation zones called…”
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  3. 3

    A rapid and efficient strategy to identify and recover biosynthetic gene clusters from soil metagenomes by Negri, Timo, Mantri, Shrikant, Angelov, Angel, Peter, Silke, Muth, Günther, Eustáquio, Alessandra S., Ziemert, Nadine

    Published in Applied microbiology and biotechnology (01-04-2022)
    “…Culture-independent metagenomic approaches offer a promising solution to the discovery of therapeutically relevant compounds such as antibiotics by enabling…”
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  4. 4

    Peptidoglycan Recycling in Gram-Positive Bacteria Is Crucial for Survival in Stationary Phase by Borisova, Marina, Gaupp, Rosmarie, Duckworth, Amanda, Schneider, Alexander, Dalügge, Désirée, Mühleck, Maraike, Deubel, Denise, Unsleber, Sandra, Yu, Wenqi, Muth, Günther, Bischoff, Markus, Götz, Friedrich, Mayer, Christoph

    Published in mBio (11-10-2016)
    “…Peptidoglycan recycling is a metabolic process by which Gram-negative bacteria reutilize up to half of their cell wall within one generation during vegetative…”
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  5. 5

    Synthetic Biology of secondary metabolite biosynthesis in actinomycetes: Engineering precursor supply as a way to optimize antibiotic production by Wohlleben, Wolfgang, Mast, Yvonne, Muth, Günther, Röttgen, Marlene, Stegmann, Evi, Weber, Tilmann

    Published in FEBS letters (16-07-2012)
    “…Actinomycetes are a rich source for the synthesis of medically and technically useful natural products. The genes encoding the enzymes for their biosynthesis…”
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  6. 6

    Control of Morphological Differentiation of Streptomyces coelicolor A3(2) by Phosphorylation of MreC and PBP2 by Ladwig, Nils, Franz-Wachtel, Mirita, Hezel, Felix, Soufi, Boumediene, Macek, Boris, Wohlleben, Wolfgang, Muth, Günther

    Published in PloS one (30-04-2015)
    “…During morphological differentiation of Streptomyces coelicolor A3(2), the sporogenic aerial hyphae are transformed into a chain of more than fifty spores in a…”
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  7. 7

    The MreB-Like Protein Mbl of Streptomyces coelicolor A3(2) Depends on MreB for Proper Localization and Contributes to Spore Wall Synthesis by HEICHLINGER, Andrea, AMMELBURG, Moritz, KLEINSCHNITZ, Eva-Maria, LATUS, Annette, MALDENER, Iris, FLÄRDH, Klas, WOHLLEBEN, Wolfgang, MUTH, Giinther

    Published in Journal of Bacteriology (01-04-2011)
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  8. 8

    Proteins encoded by the mre gene cluster in Streptomyces coelicolor A3(2) cooperate in spore wall synthesis by Kleinschnitz, Eva-Maria, Heichlinger, Andrea, Schirner, Kathrin, Winkler, Juliane, Latus, Annette, Maldener, Iris, Wohlleben, Wolfgang, Muth, Günther

    Published in Molecular microbiology (01-03-2011)
    “…It is still an open question how an intracellular cytoskeleton directs the synthesis of the peptidoglycan exoskeleton. In contrast to MreB of rod-shaped…”
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  9. 9

    Genetic Analysis of SCO2997, Encoding a TagF Homologue, Indicates a Role for Wall Teichoic Acids in Sporulation of Streptomyces coelicolor A3(2) by Kleinschnitz, Eva-Maria, Latus, Annette, Sigle, Steffen, Maldener, Iris, Wohlleben, Wolfgang, Muth, Günther

    Published in Journal of Bacteriology (01-11-2011)
    “…Streptomyces coelicolor contains two gene clusters putatively involved in wall teichoic acid biosynthesis. Inactivation of the tagF homologue SCO2997 or…”
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  10. 10

    Unique conjugation mechanism in mycelial streptomycetes: a DNA‐binding ATPase translocates unprocessed plasmid DNA at the hyphal tip by Reuther, Jens, Gekeler, Cordula, Tiffert, Yvonne, Wohlleben, Wolfgang, Muth, Günther

    Published in Molecular microbiology (01-07-2006)
    “…Summary A single plasmid‐encoded protein, the septal DNA translocator TraB, is sufficient to promote conjugal plasmid transfer in mycelial streptomycetes. To…”
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  11. 11

    The pSG5-based thermosensitive vector family for genome editing and gene expression in actinomycetes by Muth, Günther

    Published in Applied microbiology and biotechnology (01-11-2018)
    “…Actinomycetes are the most important producers of secondary metabolites for medical, agricultural and industrial applications. Efficient engineering of…”
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  12. 12

    Transcriptional and mutational analyses of the Streptomyces lividans recX gene and its interference with RecA activity by Vierling, S, Weber, T, Wohlleben, W, Muth, G

    Published in Journal of bacteriology (01-07-2000)
    “…The role of the 20,922-Da RecX protein and its interference with RecA activity were analyzed in Streptomyces lividans. The recX gene is located 220 bp…”
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  13. 13

    Conjugative DNA transfer in Streptomyces: SpdB2 involved in the intramycelial spreading of plasmid pSVH1 is an oligomeric integral membrane protein that binds to dsDNA by Tiffert, Yvonne, Gotz, Birke, Reuther, Jens, Wohlleben, Wolfgang, Muth, Gunther

    “…Mikrobiologie/Biotechnologie, Mikrobiologisches Institut, Fakultät für Biologie, Eberhard Karls Universität Tübingen, Auf der Morgenstelle 28, 72076 Tübingen,…”
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  14. 14

    Legume NCRs and nodule-specific defensins of actinorhizal plants—Do they share a common origin? by Salgado, Marco Guedes, Demina, Irina V, Maity, Pooja Jha, Nagchowdhury, Anurupa, Caputo, Andrea, Krol, Elizaveta, Loderer, Christoph, Muth, Günther, Becker, Anke, Pawlowski, Katharina

    Published in PloS one (18-08-2022)
    “…The actinorhizal plant Datisca glomerata (Datiscaceae, Cucurbitales) establishes a root nodule symbiosis with actinobacteria from the earliest branching…”
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  15. 15

    Modular architecture of the conjugative plasmid pSVH1 from Streptomyces venezuelae by Reuther, Jens, Wohlleben, Wolfgang, Muth, Günther

    Published in Plasmid (01-05-2006)
    “…The conjugative rolling circle replication (RCR) type plasmid pSVH1 from the chloramphenicol producer Streptomyces venezuelae was characterized by DNA sequence…”
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  16. 16

    A septal chromosome segregator protein evolved into a conjugative DNA-translocator protein by Sepulveda, Edgardo, Vogelmann, Jutta, Muth, Günther

    Published in Mobile genetic elements (01-09-2011)
    “…Streptomycetes, Gram-positive soil bacteria well known for the production of antibiotics feature a unique conjugative DNA transfer system. In contrast to…”
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  17. 17

    Evidence that an Additional Mutation Is Required To Tolerate Insertional Inactivation of the Streptomyces lividans recA Gene by Vierling, S, Weber, T, Wohlleben, W, Muth, G

    Published in Journal of Bacteriology (01-07-2001)
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  18. 18

    The conjugative DNA-transfer apparatus of Streptomyces by Thoma, Lina, Muth, Günther

    “…Abstract Conjugation is a major route of horizontal gene transfer, an important driving force in the evolution of bacterial genomes. Since antibiotic producing…”
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  19. 19

    Polydiglycosylphosphate Transferase PdtA (SCO2578) of Streptomyces coelicolor A3(2) Is Crucial for Proper Sporulation and Apical Tip Extension under Stress Conditions by Sigle, Steffen, Steblau, Nadja, Wohlleben, Wolfgang, Muth, Günther

    Published in Applied and environmental microbiology (15-09-2016)
    “…Although anionic glycopolymers are crucial components of the Gram-positive cell envelope, the relevance of anionic glycopolymers for vegetative growth and…”
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  20. 20

    The FtsK-like motor TraB is a DNA-dependent ATPase that forms higher-order assemblies by Amado, Eric, Muth, Günther, Arechaga, Ignacio, Cabezón, Elena

    Published in The Journal of biological chemistry (29-03-2019)
    “…TraB is an FtsK-like DNA translocase responsible for conjugative plasmid transfer in mycelial Streptomyces. Unlike other conjugative systems, which depend on a…”
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