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Here we present an approach for the mapping of unmethylated DNA. Our technique is based on DNA methyltransferase-directed transfer of activated groups (mTAG) and covalent biotin tagging of unmodified CpG sites followed by affinity enrichment and interogation on tiling microarrays or next generation ...
ORGANISM(S): Homo sapiens 
Many pathogenic bacteria utilize posttranslational modifications to manipulate central components of the host cell functions. Often, the released enzymes belong to the large Fic-family, causing target modification with nucleotide monophosphates. Due to the lack of a generic method for the identifica...
ORGANISM(S): Homo sapiens (Human) 
2020-07-09 | PXD015599 | Pride
Here we present an approach for the mapping of unmethylated DNA. Our technique is based on DNA methyltransferase-directed transfer of activated groups (mTAG) and covalent biotin tagging of unmodified CpG sites followed by affinity enrichment and interogation on tiling microarrays or next generation ...
ORGANISM(S): Homo sapiens 
Here we present an approach for the mapping of unmethylated DNA. Our technique is based on DNA methyltransferase-directed transfer of activated groups (mTAG) and covalent biotin tagging of unmodified CpG sites followed by affinity enrichment and interogation on tiling microarrays or next generation ...
ORGANISM(S): Homo sapiens 
2013-08-27 | GSE48994 | GEO
Here we present an approach for the mapping of unmethylated DNA. Our technique is based on DNA methyltransferase-directed transfer of activated groups (mTAG) and covalent biotin tagging of unmodified CpG sites followed by affinity enrichment and interogation on tiling microarrays or next generation ...
ORGANISM(S): Homo sapiens 
2013-08-27 | GSE49044 | GEO
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