TY - JOUR
T1 - The emerging role of lysine demethylases in DNA damage response
T2 - Dissecting the recruitment mode of KDM4D/JMJD2D to DNA damage sites
AU - Khoury-Haddad, Hanan
AU - Nadar-Ponniah, Prathamesh T.
AU - Awwad, Samah
AU - Ayoub, Nabieh
N1 - Publisher Copyright:
© 2015 Taylor & Francis Group, LLC.
PY - 2015/4/1
Y1 - 2015/4/1
N2 - KDM4D is a lysine demethylase that removes tri- and di- methylated residues from H3K9 and is involved in transcriptional regulation and carcinogenesis. We recently showed that KDM4D is recruited to DNA damage sites in a PARP1-dependent manner and facilitates double-strand break repair in human cells. Moreover, we demonstrated that KDM4D is an RNA binding protein and mapped its RNA-binding motifs. Interestingly, KDM4D-RNA interaction is essential for its localization on chromatin and subsequently for efficient demethylation of its histone substrate H3K9me 3. Here, we provide new data that shed mechanistic insights into KDM4D accumulation at DNA damage sites. We show for the first time that KDM4D binds poly(ADP-ribose) (PAR) in vitro via its C-terminal region. In addition, we demonstrate that KDM4D-RNA interaction is required for KDM4D accumulation at DNA breakage sites. Finally, we discuss the recruitment mode and the biological functions of additional lysine demethylases including KDM4B, KDM5B, JMJD1C, and LSD1 in DNA damage response.
AB - KDM4D is a lysine demethylase that removes tri- and di- methylated residues from H3K9 and is involved in transcriptional regulation and carcinogenesis. We recently showed that KDM4D is recruited to DNA damage sites in a PARP1-dependent manner and facilitates double-strand break repair in human cells. Moreover, we demonstrated that KDM4D is an RNA binding protein and mapped its RNA-binding motifs. Interestingly, KDM4D-RNA interaction is essential for its localization on chromatin and subsequently for efficient demethylation of its histone substrate H3K9me 3. Here, we provide new data that shed mechanistic insights into KDM4D accumulation at DNA damage sites. We show for the first time that KDM4D binds poly(ADP-ribose) (PAR) in vitro via its C-terminal region. In addition, we demonstrate that KDM4D-RNA interaction is required for KDM4D accumulation at DNA breakage sites. Finally, we discuss the recruitment mode and the biological functions of additional lysine demethylases including KDM4B, KDM5B, JMJD1C, and LSD1 in DNA damage response.
KW - And cancer
KW - Chromosomal instability
KW - DNA damage response (DDR)
KW - Double strand break (DSB)
KW - KDM4D
KW - Lysine demethylases (KDM)
KW - PARP1
KW - Poly (ADP-ribose)ylation (PARylation)
UR - http://www.scopus.com/inward/record.url?scp=84928136180&partnerID=8YFLogxK
U2 - 10.1080/15384101.2015.1014147
DO - 10.1080/15384101.2015.1014147
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C2 - 25714495
AN - SCOPUS:84928136180
SN - 1538-4101
VL - 14
SP - 950
EP - 958
JO - Cell Cycle
JF - Cell Cycle
IS - 7
ER -