TY - JOUR
T1 - Nrf2 activation attenuates genetic endoplasmic reticulum stress induced by a mutation in the phosphomannomutase 2 gene in zebrafish
AU - Mukaigasa, Katsuki
AU - Tsujita, Tadayuki
AU - Nguyen, Vu Thanh
AU - Li, Li
AU - Yagi, Hirokazu
AU - Fuse, Yuji
AU - Nakajima-Takagi, Yaeko
AU - Kato, Koichi
AU - Yamamoto, Masayuki
AU - Kobayashi, Makoto
N1 - Funding Information:
ACKNOWLEDGMENTS. We thank M. Eguchi, M. Komeda, Y. Nakayama, Y. Terashita, and Y. Wada for help with fish maintenance; T. E. Dever, H. H. Freeze, T. Irimura, T. Ishikawa, A. Kawahara, A. Kobayashi, K. Mori, H. Yoshida, and Y. Wada for valuable suggestions; and C.-S. Andrea, H. Nakajima, Miki Takeuchi, Miho Takeuchi, and J. Tamaoki for experimental help and discussions. This work was supported by grants from the Yamazaki Spice Promotion Foundation (to M.K.), the Koyanagi Foundation (to M.K.), the Japan Science and Technology Corporation (ERATO) (to M.Y.), and the Ministry of Education, Science, Sports and Culture of Japan [Grants 20059004, 21026003, 21659043, 24590340, 26116705, and 26520101 (to M.K.); Grant 25102008 (to K.K.); and Grants 15K07935 and 26110716 (to H.Y.)].
Funding Information:
We thank M. Eguchi, M. Komeda, Y. Nakayama, Y. Terashita, and Y. Wada for help with fish maintenance; T. E. Dever, H. H. Freeze, T. Irimura, T. Ishikawa, A. Kawahara, A. Kobayashi, K. Mori, H. Yoshida, and Y. Wada for valuable suggestions; and C.-S. Andrea, H. Nakajima, Miki Takeuchi, Miho Takeuchi, and J. Tamaoki for experimental help and discussions. This work was supported by grants from the Yamazaki Spice Promotion Foundation (to M.K.), the Koyanagi Foundation (to M.K.), the Japan Science and Technology Corporation (ERATO) (to M.Y.), and the Ministry of Education, Science, Sports and Culture of Japan [Grants 20059004, 21026003, 21659043, 24590340, 26116705, and 26520101 (to M.K.); Grant 25102008 (to K.K.); and Grants 15K07935 and 26110716 (to H.Y.)].
Publisher Copyright:
© 2018 National Academy of Sciences. All Rights Reserved.
PY - 2018
Y1 - 2018
N2 - Nrf2 plays critical roles in animals’ defense against electrophiles and oxidative stress by orchestrating the induction of cytoprotective genes. We previously isolated the zebrafish mutant it768, which displays up-regulated expression of Nrf2 target genes in an uninduced state. In this paper, we determine that the gene responsible for it768 was the zebrafish homolog of phosphomannomutase 2 (Pmm2), which is a key enzyme in the initial steps of N-glycosylation, and its mutation in humans leads to PMM2-CDG (congenital disorders of glycosylation), the most frequent type of CDG. The pmm2it768 larvae exhibited mild defects in N-glycosylation, indicating that the pmm2it768 mutation is a hypomorph, as in human PMM2-CDG patients. A gene expression analysis showed that pmm2it768 larvae display up-regulation of endoplasmic reticulum (ER) stress, suggesting that the activation of Nrf2 was induced by the ER stress. Indeed, the treatment with the ER stress-inducing compounds up-regulated the gstp1 expression in an Nrf2-dependent manner. Furthermore, the up-regulation of gstp1 by the pmm2 inactivation was diminished by knocking down or out double-stranded RNA-activated protein kinase (PKR)-like ER kinase (PERK), one of the main ER stress sensors, suggesting that Nrf2 was activated in response to the ER stress via the PERK pathway. ER stress-induced activation of Nrf2 was reported previously, but the results have been controversial. Our present study clearly demonstrated that ER stress can indeed activate Nrf2 and this regulation is evolutionarily conserved among vertebrates. Moreover, ER stress induced in pmm2it768 mutants was ameliorated by the treatment of the Nrf2-activator sulforaphane, indicating that Nrf2 plays significant roles in the reduction of ER stress.
AB - Nrf2 plays critical roles in animals’ defense against electrophiles and oxidative stress by orchestrating the induction of cytoprotective genes. We previously isolated the zebrafish mutant it768, which displays up-regulated expression of Nrf2 target genes in an uninduced state. In this paper, we determine that the gene responsible for it768 was the zebrafish homolog of phosphomannomutase 2 (Pmm2), which is a key enzyme in the initial steps of N-glycosylation, and its mutation in humans leads to PMM2-CDG (congenital disorders of glycosylation), the most frequent type of CDG. The pmm2it768 larvae exhibited mild defects in N-glycosylation, indicating that the pmm2it768 mutation is a hypomorph, as in human PMM2-CDG patients. A gene expression analysis showed that pmm2it768 larvae display up-regulation of endoplasmic reticulum (ER) stress, suggesting that the activation of Nrf2 was induced by the ER stress. Indeed, the treatment with the ER stress-inducing compounds up-regulated the gstp1 expression in an Nrf2-dependent manner. Furthermore, the up-regulation of gstp1 by the pmm2 inactivation was diminished by knocking down or out double-stranded RNA-activated protein kinase (PKR)-like ER kinase (PERK), one of the main ER stress sensors, suggesting that Nrf2 was activated in response to the ER stress via the PERK pathway. ER stress-induced activation of Nrf2 was reported previously, but the results have been controversial. Our present study clearly demonstrated that ER stress can indeed activate Nrf2 and this regulation is evolutionarily conserved among vertebrates. Moreover, ER stress induced in pmm2it768 mutants was ameliorated by the treatment of the Nrf2-activator sulforaphane, indicating that Nrf2 plays significant roles in the reduction of ER stress.
KW - ER stress
KW - Nrf2
KW - PMM2-CDG
KW - Sulforaphane
KW - Zebrafish mutant
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U2 - 10.1073/pnas.1714056115
DO - 10.1073/pnas.1714056115
M3 - Article
C2 - 29472449
AN - SCOPUS:85043789813
SN - 0027-8424
VL - 115
SP - 2758
EP - 2763
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 11
ER -