Veiko Krauss
Veiko Krauss
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The protein encoded by the Drosophila position‐effect variegation suppressor gene Su (var) 3‐9 combines domains of antagonistic regulators of homeotic gene complexes.
B Tschiersch, A Hofmann, V Krauss, R Dorn, G Korge, G Reuter
The EMBO journal 13 (16), 3822-3831, 1994
Central role of Drosophila SU (VAR) 3–9 in histone H3-K9 methylation and heterochromatic gene silencing
G Schotta, A Ebert, V Krauss, A Fischer, J Hoffmann, S Rea, T Jenuwein, ...
The EMBO journal 21 (5), 1121-1131, 2002
The Arabidopsis thaliana genome contains at least 29 active genes encoding SET domain proteins that can be assigned to four evolutionarily conserved classes
LO Baumbusch, T Thorstensen, V Krauss, A Fischer, K Naumann, ...
Nucleic acids research 29 (21), 4319-4333, 2001
Su (var) genes regulate the balance between euchromatin and heterochromatin in Drosophila
A Ebert, G Schotta, S Lein, S Kubicek, V Krauss, T Jenuwein, G Reuter
Genes & development 18 (23), 2973-2983, 2004
Pivotal role of AtSUVH2 in heterochromatic histone methylation and gene silencing in Arabidopsis
K Naumann, A Fischer, I Hofmann, V Krauss, S Phalke, K Irmler, G Hause, ...
The EMBO journal 24 (7), 1418-1429, 2005
The enhancer of position-effect variegation of Drosophila, E (var) 3-93D, codes for a chromatin protein containing a conserved domain common to several transcriptional regulators.
R Dorn, V Krauss, G Reuter, H Saumweber
Proceedings of the National Academy of Sciences 90 (23), 11376-11380, 1993
Genomic and morphological evidence converge to resolve the enigma of Strepsiptera
O Niehuis, G Hartig, S Grath, H Pohl, J Lehmann, H Tafer, A Donath, ...
Current Biology 22 (14), 1309-1313, 2012
Genetic and Molecular Complexity of the Position Effect Variegation Modifier mod(mdg4) in Drosophila
K Büchner, P Roth, G Schotta, V Krauss, H Saumweber, G Reuter, R Dorn
Genetics 155 (1), 141-157, 2000
The Modifier of mdg4 Locus in Drosophila: Functional Complexity is Resolved by trans Splicing
R Dorn, V Krauss
Genetica 117, 165-177, 2003
Glimpses of evolution: heterochromatic histone H3K9 methyltransferases left its marks behind
V Krauss
Genetica 133 (1), 93-106, 2008
Phylogenetic mapping of intron positions: a case study of translation initiation factor eIF2γ
V Krauss, M Pecyna, K Kurz, H Sass
Molecular biology and evolution 22 (1), 74-84, 2005
Near intron positions are reliable phylogenetic markers: an application to holometabolous insects
V Krauss, C Thümmler, F Georgi, J Lehmann, PF Stadler, C Eisenhardt
Molecular biology and evolution 25 (5), 821-830, 2008
DNA methylation in Drosophila—a critical evaluation
V Krauss, G Reuter
Progress in molecular biology and translational science 101, 177-191, 2011
The correlation of genome size and DNA methylation rate in metazoans
M Lechner, M Marz, C Ihling, A Sinz, PF Stadler, V Krauss
Theory in Biosciences 132, 47-60, 2013
The genome of the stick insect Medauroidea extradentata is strongly methylated within genes and repetitive DNA
V Krauss, C Eisenhardt, T Unger
PLoS One 4 (9), e7223, 2009
Evolution of the trans-splicing Drosophila locus mod (mdg4) in several species of Diptera and Lepidoptera
V Krauss, R Dorn
Gene 331, 165-176, 2004
Two genes become one: the genes encoding heterochromatin protein SU (VAR) 3-9 and translation initiation factor subunit eIF-2γ are joined to a dicistronic unit in holometabolic …
V Krauss, G Reuter
Genetics 156 (3), 1157-1167, 2000
The evolution of the histone methyltransferase gene Su (var) 3-9 in metazoans includes a fusion with and a re-fission from a functionally unrelated gene
V Krauss, A Fassl, P Fiebig, I Patties, H Sass
BMC Evolutionary Biology 6 (1), 1-15, 2006
Some novel intron positions in conserved Drosophila genes are caused by intron sliding or tandem duplication
J Lehmann, C Eisenhardt, PF Stadler, V Krauss
BMC Evolutionary Biology 10 (1), 1-15, 2010
Gene, Zufall, Selektion
V Krauß
Gene, Zufall, Selektion, 2014
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