Post-translational modifications of histone proteins regulate numerous cellular processes. Among these modifications, trimethylation of lysine 36 in histone H3 (H3K36me3) and acetylation of lysine 16 in histone H4 (H4K16ac) have important roles in transcriptional regulation and DNA damage response signaling. However, whether these two epigenetic histone marks are mechanistically linked remains unclear. Here we discovered a new pathway through which H3K36me3 stimulates H4K16ac upon DNA double-strand break (DSB) induction in human cells. In particular, we examined, using Western blot analysis, the levels of H3K36me3 and H4K16ac in cells after exposure to various DSB-inducing agents, including neocarzinostatin, γ rays, and etoposide, and found...
SummaryBackgroundAcetylation of histone H3 lysine 56 (K56Ac) occurs transiently in newly synthesized...
Histone ubiquitylation has emerged as an important chromatin modification associated with DNA damage...
Background: Histone post-translational modifications are critical determinants of chromatin structur...
Chromatin is a highly compact structure that must be rapidly rearranged in order for DNA repair prot...
Abstract Epigenome editing methods enable the precise manipulation of epigenetic modifications, such...
Histone modifications are major determinants of DNA double-strand break (DSB) response and repair. H...
MOF (MYST1) is the major enzyme to catalyze acetylation of histone H4 lysine 16 (K16) and is highly ...
Individual histone post-translational modifications have been implicated in regulating many cellular...
Histone modifications affect many cellular processes including DNA damage repair. This thesis focuss...
During DNA replication in the S phase, the parental nucleosome is disassembled ahead of the replicat...
Modulating chromatin through histone methylation orchestrates numerous cellular processes. SETD2-dep...
SummaryModulating chromatin through histone methylation orchestrates numerous cellular processes. SE...
DNA double-strand break (DSB) repair is a highly regulated process performed predominantly by non-ho...
Histone H4 acetylation at Lysine 16 (H4K16ac) is a key epigenetic mark involved in gene regulation, ...
DNA double-strand breaks (DSBs) can be induced endogenously and by exposure to ionizing radiation, a...
SummaryBackgroundAcetylation of histone H3 lysine 56 (K56Ac) occurs transiently in newly synthesized...
Histone ubiquitylation has emerged as an important chromatin modification associated with DNA damage...
Background: Histone post-translational modifications are critical determinants of chromatin structur...
Chromatin is a highly compact structure that must be rapidly rearranged in order for DNA repair prot...
Abstract Epigenome editing methods enable the precise manipulation of epigenetic modifications, such...
Histone modifications are major determinants of DNA double-strand break (DSB) response and repair. H...
MOF (MYST1) is the major enzyme to catalyze acetylation of histone H4 lysine 16 (K16) and is highly ...
Individual histone post-translational modifications have been implicated in regulating many cellular...
Histone modifications affect many cellular processes including DNA damage repair. This thesis focuss...
During DNA replication in the S phase, the parental nucleosome is disassembled ahead of the replicat...
Modulating chromatin through histone methylation orchestrates numerous cellular processes. SETD2-dep...
SummaryModulating chromatin through histone methylation orchestrates numerous cellular processes. SE...
DNA double-strand break (DSB) repair is a highly regulated process performed predominantly by non-ho...
Histone H4 acetylation at Lysine 16 (H4K16ac) is a key epigenetic mark involved in gene regulation, ...
DNA double-strand breaks (DSBs) can be induced endogenously and by exposure to ionizing radiation, a...
SummaryBackgroundAcetylation of histone H3 lysine 56 (K56Ac) occurs transiently in newly synthesized...
Histone ubiquitylation has emerged as an important chromatin modification associated with DNA damage...
Background: Histone post-translational modifications are critical determinants of chromatin structur...