TY - JOUR
T1 - The regulation mechanisms of AhR by molecular chaperone complex
AU - Kudo, Ikuru
AU - Hosaka, Miki
AU - Haga, Asami
AU - Tsuji, Noriko
AU - Nagata, Yuhtaroh
AU - Okada, Hirotaka
AU - Fukuda, Kana
AU - Kakizaki, Yuka
AU - Okamoto, Tomoya
AU - Grave, Ewa
AU - Itoh, Hideaki
N1 - Funding Information:
H.I. was supported by a Grant-in-Aid for Scientific Research (Exploratory Research: 16651056) from the Japanese Ministry of Education, Science, Sports and Culture.
Publisher Copyright:
© 2017 The Authors.
PY - 2018/3/1
Y1 - 2018/3/1
N2 - The AhR, so called the dioxin receptor, is a member of the nuclear receptor superfamily. The ligand-free AhR forms a cytosolic protein complex with the molecular chaperone HSP90, co-chaperone p23, and XAP2 in the cytoplasm. Following ligand binding like 2, 3, 7, 8-tetrachlorodibenzo- p-dioxin (TCDD), the AhR translocates into the nucleus. Although it has been reported that HSP90 regulates the translocation of the AhR to the nucleus, the precise activation mechanisms of the AhR have not yet been fully understood. AhR consists of the N-terminal bHLH domain containing NLS and NES, the middle PAS domain and the C-terminal transactivation domain. The PAS domain is familiar as a ligand and HSP90 binding domain. In this study, we focused on the bHLH domain that was thought to be a HSP90 binding domain. We investigated the binding properties of bHLH to HSP90. We analyzed the direct interaction of bHLH with HSP90, p23 and XAP2 using purified proteins. We found that not only the PAS domain but also the bHLH domain bound to HSP90. The bHLH domain forms complex with HSP90, p23 and XAP2. We also determined the bHLH binding domain was HSP90 N-domain. The bHLH domain makes a complex with HSP90, p23 and XAP2 via the HSP90 N-domain. Although the NLS is closed in the absence of a ligand, the structure of AhR will be changed in the presence of a ligand, which leads to NLS open, result in the nuclear translocation of AhR.
AB - The AhR, so called the dioxin receptor, is a member of the nuclear receptor superfamily. The ligand-free AhR forms a cytosolic protein complex with the molecular chaperone HSP90, co-chaperone p23, and XAP2 in the cytoplasm. Following ligand binding like 2, 3, 7, 8-tetrachlorodibenzo- p-dioxin (TCDD), the AhR translocates into the nucleus. Although it has been reported that HSP90 regulates the translocation of the AhR to the nucleus, the precise activation mechanisms of the AhR have not yet been fully understood. AhR consists of the N-terminal bHLH domain containing NLS and NES, the middle PAS domain and the C-terminal transactivation domain. The PAS domain is familiar as a ligand and HSP90 binding domain. In this study, we focused on the bHLH domain that was thought to be a HSP90 binding domain. We investigated the binding properties of bHLH to HSP90. We analyzed the direct interaction of bHLH with HSP90, p23 and XAP2 using purified proteins. We found that not only the PAS domain but also the bHLH domain bound to HSP90. The bHLH domain forms complex with HSP90, p23 and XAP2. We also determined the bHLH binding domain was HSP90 N-domain. The bHLH domain makes a complex with HSP90, p23 and XAP2 via the HSP90 N-domain. Although the NLS is closed in the absence of a ligand, the structure of AhR will be changed in the presence of a ligand, which leads to NLS open, result in the nuclear translocation of AhR.
KW - AhR
KW - HSP90
KW - aryl hydrocarbon receptor
KW - co-chaperone
KW - molecular chaperone
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U2 - 10.1093/jb/mvx074
DO - 10.1093/jb/mvx074
M3 - Article
C2 - 29092071
AN - SCOPUS:85042910126
SN - 0021-924X
VL - 163
SP - 223
EP - 232
JO - Journal of Biochemistry
JF - Journal of Biochemistry
IS - 3
ER -