Erich Lanka

Affiliations: 
Max-Planck-Institut für molekulare Genetik, Berlin, Berlin, Germany 
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"Erich Lanka"
Bio:

https://books.google.com/books?id=AQa5AAAAIAAJ

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Olaf Pongs grad student 1975 TU Berlin
 (Affinitätsmarkierung der Codon-Bindungsstelle von Escherichia Coli Ribosomen.)
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Publications

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Banchenko S, Weise C, Lanka E, et al. (2021) Helix Bundle Domain of Primase RepB' Is Required for Dinucleotide Formation and Extension. Acs Omega. 6: 28903-28911
Hammerl JA, Jäckel C, Lanka E, et al. (2016) Binding Specificities of the Telomere Phage ϕKO2 Prophage Repressor CB and Lytic Repressor Cro. Viruses. 8
Hammerl JA, Roschanski N, Lurz R, et al. (2015) The Molecular Switch of Telomere Phages: High Binding Specificity of the PY54 Cro Lytic Repressor to a Single Operator Site. Viruses. 7: 2771-93
Hammerl JA, Freytag B, Lanka E, et al. (2012) The pYV virulence plasmids of Yersinia pseudotuberculosis and Y. pestis contain a conserved DNA region responsible for the mobilization by the self-transmissible plasmid pYE854. Environmental Microbiology Reports. 4: 433-8
Kraushaar B, Appel B, Lanka E, et al. (2010) Entry exclusion and oriT of a conjugative system encoded by the cryptic plasmid p29930 of Yersinia enterocolitica Plasmid. 64: 79-84
Geibel S, Banchenko S, Engel M, et al. (2009) Structure and function of primase RepB' encoded by broad-host-range plasmid RSF1010 that replicates exclusively in leading-strand mode. Proceedings of the National Academy of Sciences of the United States of America. 106: 7810-5
König B, Müller JJ, Lanka E, et al. (2009) Crystal structure of KorA bound to operator DNA: insight into repressor cooperation in RP4 gene regulation. Nucleic Acids Research. 37: 1915-24
Hammerl JA, Klein I, Lanka E, et al. (2008) Genetic and functional properties of the self-transmissible Yersinia enterocolitica plasmid pYE854, which mobilizes the virulence plasmid pYV. Journal of Bacteriology. 190: 991-1010
Fernandez-Lopez R, Machón C, Longshaw CM, et al. (2005) Unsaturated fatty acids are inhibitors of bacterial conjugation. Microbiology (Reading, England). 151: 3517-26
Blaesing F, Mühlenweg A, Vierling S, et al. (2005) Introduction of DNA into Actinomycetes by bacterial conjugation from E. coli--an evaluation of various transfer systems. Journal of Biotechnology. 120: 146-61
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