TY - JOUR
T1 - An atomic model of Zfp57 recognition of CpG methylation within a specific DNA sequence
AU - Liu, Yiwei
AU - Toh, Hidehiro
AU - Sasaki, Hiroyuki
AU - Zhang, Xing
AU - Cheng, Xiaodong
PY - 2012/11/1
Y1 - 2012/11/1
N2 - Zinc finger transcription factor Zfp57 recognizes the methylated CpG within the TGCCGC element. We determined the structure of the DNA-binding domain of Zfp57, consisting of two adjacent zinc fingers, in complex with fully methylated DNA at 1.0 Å resolution. The first zinc finger contacts the 5′ half (TGC), and the second recognizes the 3′ half (CGC) of the recognition sequence. Zfp57 recognizes the two 5-methylcytosines (5mCs) asymmetrically: One involves hydrophobic interactions with Arg178, which also interacts with the neighboring 3′ guanine and forms a 5mC-Arg-G interaction, while the other involves a layer of ordered water molecules. Two point mutations in patients with transient neonatal diabetes abolish DNA-binding activity. Zfp57 has reduced binding affinity for unmodified DNA and the oxidative products of 5mC.
AB - Zinc finger transcription factor Zfp57 recognizes the methylated CpG within the TGCCGC element. We determined the structure of the DNA-binding domain of Zfp57, consisting of two adjacent zinc fingers, in complex with fully methylated DNA at 1.0 Å resolution. The first zinc finger contacts the 5′ half (TGC), and the second recognizes the 3′ half (CGC) of the recognition sequence. Zfp57 recognizes the two 5-methylcytosines (5mCs) asymmetrically: One involves hydrophobic interactions with Arg178, which also interacts with the neighboring 3′ guanine and forms a 5mC-Arg-G interaction, while the other involves a layer of ordered water molecules. Two point mutations in patients with transient neonatal diabetes abolish DNA-binding activity. Zfp57 has reduced binding affinity for unmodified DNA and the oxidative products of 5mC.
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U2 - 10.1101/gad.202200.112
DO - 10.1101/gad.202200.112
M3 - Article
C2 - 23059534
AN - SCOPUS:84868556202
SN - 0890-9369
VL - 26
SP - 2374
EP - 2379
JO - Genes and Development
JF - Genes and Development
IS - 21
ER -