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IMP dehydrogenase-2 drives aberrant nucleolar activity and promotes tumorigenesis in glioblastoma.

Authors :
Kofuji, Satoshi
Kofuji, Satoshi
Hirayama, Akiyoshi
Eberhardt, Alexander
Kawaguchi, Risa
Sugiura, Yuki
Sampetrean, Oltea
Ikeda, Yoshiki
Warren, Mikako
Sakamoto, Naoya
Kitahara, Shuji
Yoshino, Hirofumi
Yamashita, Daisuke
Sumita, Kazutaka
Wolfe, Kara
Lange, Lisa
Ikeda, Satsuki
Shimada, Hiroko
Minami, Noriaki
Malhotra, Akshiv
Morioka, Shin
Ban, Yuki
Asano, Maya
Flanary, Victoria
Ramkissoon, Annmarie
Chow, Lionel
Kiyokawa, Juri
Mashimo, Tomoyuki
Lucey, Greg
Mareninov, Sergey
Ozawa, Tatsuya
Onishi, Nobuyuki
Okumura, Koichi
Terakawa, Jumpei
Daikoku, Takiko
Wise-Draper, Trisha
Majd, Nazanin
Kofuji, Kaori
Sasaki, Mika
Mori, Masaru
Kanemura, Yonehiro
Smith, Eric
Anastasiou, Dimitrios
Wakimoto, Hiroaki
Holland, Eric
Yong, William
Horbinski, Craig
Nakano, Ichiro
DeBerardinis, Ralph
Bachoo, Robert
Mischel, Paul
Yasui, Wataru
Suematsu, Makoto
Saya, Hideyuki
Soga, Tomoyoshi
Grummt, Ingrid
Bierhoff, Holger
Sasaki, Atsuo
Kofuji, Satoshi
Kofuji, Satoshi
Hirayama, Akiyoshi
Eberhardt, Alexander
Kawaguchi, Risa
Sugiura, Yuki
Sampetrean, Oltea
Ikeda, Yoshiki
Warren, Mikako
Sakamoto, Naoya
Kitahara, Shuji
Yoshino, Hirofumi
Yamashita, Daisuke
Sumita, Kazutaka
Wolfe, Kara
Lange, Lisa
Ikeda, Satsuki
Shimada, Hiroko
Minami, Noriaki
Malhotra, Akshiv
Morioka, Shin
Ban, Yuki
Asano, Maya
Flanary, Victoria
Ramkissoon, Annmarie
Chow, Lionel
Kiyokawa, Juri
Mashimo, Tomoyuki
Lucey, Greg
Mareninov, Sergey
Ozawa, Tatsuya
Onishi, Nobuyuki
Okumura, Koichi
Terakawa, Jumpei
Daikoku, Takiko
Wise-Draper, Trisha
Majd, Nazanin
Kofuji, Kaori
Sasaki, Mika
Mori, Masaru
Kanemura, Yonehiro
Smith, Eric
Anastasiou, Dimitrios
Wakimoto, Hiroaki
Holland, Eric
Yong, William
Horbinski, Craig
Nakano, Ichiro
DeBerardinis, Ralph
Bachoo, Robert
Mischel, Paul
Yasui, Wataru
Suematsu, Makoto
Saya, Hideyuki
Soga, Tomoyoshi
Grummt, Ingrid
Bierhoff, Holger
Sasaki, Atsuo
Source :
Nature Cell Biology; vol 21, iss 8
Publication Year :
2019

Abstract

In many cancers, high proliferation rates correlate with elevation of rRNA and tRNA levels, and nucleolar hypertrophy. However, the underlying mechanisms linking increased nucleolar transcription and tumorigenesis are only minimally understood. Here we show that IMP dehydrogenase-2 (IMPDH2), the rate-limiting enzyme for de novo guanine nucleotide biosynthesis, is overexpressed in the highly lethal brain cancer glioblastoma. This leads to increased rRNA and tRNA synthesis, stabilization of the nucleolar GTP-binding protein nucleostemin, and enlarged, malformed nucleoli. Pharmacological or genetic inactivation of IMPDH2 in glioblastoma reverses these effects and inhibits cell proliferation, whereas untransformed glia cells are unaffected by similar IMPDH2 perturbations. Impairment of IMPDH2 activity triggers nucleolar stress and growth arrest of glioblastoma cells even in the absence of functional p53. Our results reveal that upregulation of IMPDH2 is a prerequisite for the occurance of aberrant nucleolar function and increased anabolic processes in glioblastoma, which constitutes a primary event in gliomagenesis.

Details

Database :
OAIster
Journal :
Nature Cell Biology; vol 21, iss 8
Notes :
application/pdf, Nature Cell Biology vol 21, iss 8
Publication Type :
Electronic Resource
Accession number :
edsoai.on1449577802
Document Type :
Electronic Resource