International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies in various organisms highlight the role of chromatin regulation of repetitive DNA in gene regulation as well as in maintainance of chromosomes and genome integrity. Hence, repetitive DNA sequences might be potential "sensors" for chromatin changes associated with pathogenesis. Therefore, we developed a new genomic tool called RepArray. RepArray is a repeat-specific microarray composed of a representative set of human repeated sequences including transposon-derived repeats, simple sequences repeats, tandemly repeated sequences such as centromeres and telomeres. We showed that combined to anti-methylcytosine immunoprecipitation assay, the RepAr...
Mobile elements and repetitive genomic regions are sources of lineage-specific genomic innovation an...
Mobile elements and repetitive genomic regions are sources of lineage-specific genomic innovation an...
Transposable elements (TE) comprise half of the human genome. LINE-1 and ALU are the most common TE,...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
Mobile elements and repetitive genomic regions are sources of lineage-specific genomic innovation an...
Transposable elements (TE) comprise half of the human genome. LINE-1 and ALU are the most common TE,...
Mobile elements and repetitive genomic regions are sources of lineage-specific genomic innovation an...
Mobile elements and repetitive genomic regions are sources of lineage-specific genomic innovation an...
Transposable elements (TE) comprise half of the human genome. LINE-1 and ALU are the most common TE,...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
International audienceHalf of the human genome consists of repetitive DNA sequences. Recent studies ...
Mobile elements and repetitive genomic regions are sources of lineage-specific genomic innovation an...
Transposable elements (TE) comprise half of the human genome. LINE-1 and ALU are the most common TE,...
Mobile elements and repetitive genomic regions are sources of lineage-specific genomic innovation an...
Mobile elements and repetitive genomic regions are sources of lineage-specific genomic innovation an...
Transposable elements (TE) comprise half of the human genome. LINE-1 and ALU are the most common TE,...