H2AX phosphorylation at serine 139 (γH2AX) is a sensitive indicator of both DNA damage and DNA replication stress. Here we show that γH2AX formation is greatly enhanced in response to replication inhibitors but not ionizing radiation in HCT116 or SW480 cells depleted of Chk1. Although H2AX phosphorylation precedes the induction of apoptosis in such cells, our results suggest that cells containing γH2AX are not committed to death. γH2AX foci in these cells largely colocalize with RPA foci and their formation is dependent upon the essential replication helicase cofactor Cdc45, suggesting that H2AX phosphorylation occurs at sites of stalled forks. However Chk1-depleted cells released from replication inhibitors retain γH2AX foci and do not app...
Background. The histone variant histone H2A.X comprises up to 25 % of the H2A complement in mammalia...
The cellular response to DNA damage is aimed at protecting organisms from harmful effects of unrepai...
Problems during DNA replication often cause chromosomal abnormalities when replication forks become ...
H2AX phosphorylation at serine 139 (H2AX) is a sensitive indicator of both DNA damage and DNA replic...
AbstractPhosphorylated H2AX is considered to be a biomarker for DNA double-strand breaks (DSB), but ...
The replication protein A (RPA)-ssDNA complex formed at arrested replication forks recruits key prot...
Phosphorylated histone H2AX (γ-H2AX), a central player in the DNA damage response (DDR), serves as a...
AbstractBackground: The response of eukaryotic cells to double-strand breaks in genomic DNA includes...
The role of Chk1 in the cellular response to DNA replication stress is well established. However rec...
When a mammalian cell suffers DNA damage, DNA damage signaling responses and repair pathways are inv...
H2AX is a variant form of the nucleosomal protein, histone H2A. H2AX is phosphorylated on its S139 s...
One of the earliest events in cellular response to a nascent double stranded DNA break (DSB) is loca...
DNA double-strand breaks (DSB) are considered as the most deleterious DNA lesions, and their repair ...
The influence of mono-ubiquitylation of histone H2B (H2Bub) on transcription via nucleosome reassemb...
The related PIK-like kinases Ataxia-Telangiectasia Mutated (ATM) and ATM- and Rad3-related (ATR) pla...
Background. The histone variant histone H2A.X comprises up to 25 % of the H2A complement in mammalia...
The cellular response to DNA damage is aimed at protecting organisms from harmful effects of unrepai...
Problems during DNA replication often cause chromosomal abnormalities when replication forks become ...
H2AX phosphorylation at serine 139 (H2AX) is a sensitive indicator of both DNA damage and DNA replic...
AbstractPhosphorylated H2AX is considered to be a biomarker for DNA double-strand breaks (DSB), but ...
The replication protein A (RPA)-ssDNA complex formed at arrested replication forks recruits key prot...
Phosphorylated histone H2AX (γ-H2AX), a central player in the DNA damage response (DDR), serves as a...
AbstractBackground: The response of eukaryotic cells to double-strand breaks in genomic DNA includes...
The role of Chk1 in the cellular response to DNA replication stress is well established. However rec...
When a mammalian cell suffers DNA damage, DNA damage signaling responses and repair pathways are inv...
H2AX is a variant form of the nucleosomal protein, histone H2A. H2AX is phosphorylated on its S139 s...
One of the earliest events in cellular response to a nascent double stranded DNA break (DSB) is loca...
DNA double-strand breaks (DSB) are considered as the most deleterious DNA lesions, and their repair ...
The influence of mono-ubiquitylation of histone H2B (H2Bub) on transcription via nucleosome reassemb...
The related PIK-like kinases Ataxia-Telangiectasia Mutated (ATM) and ATM- and Rad3-related (ATR) pla...
Background. The histone variant histone H2A.X comprises up to 25 % of the H2A complement in mammalia...
The cellular response to DNA damage is aimed at protecting organisms from harmful effects of unrepai...
Problems during DNA replication often cause chromosomal abnormalities when replication forks become ...