The lysophospholipase D enzyme Gdpd3 is required to maintain chronic myelogenous leukaemia stem cells

How lipid metabolism can affect cancer recurrence is still unclear. Here, the authors show that the lysophospholipase D Gdpd3 maintains self-renewal capacity of CML stem cells by regulating the quiescence, and AKT/mTORC1 and Foxo3a/β-catenin signalling in an oncogene-independent manner.

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Autores principales: Kazuhito Naka, Ryosuke Ochiai, Eriko Matsubara, Chie Kondo, Kyung-Min Yang, Takayuki Hoshii, Masatake Araki, Kimi Araki, Yusuke Sotomaru, Ko Sasaki, Kinuko Mitani, Dong-Wook Kim, Akira Ooshima, Seong-Jin Kim
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/73aca2b556d542e499ca1a950b353d8d
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spelling oai:doaj.org-article:73aca2b556d542e499ca1a950b353d8d2021-12-02T18:02:24ZThe lysophospholipase D enzyme Gdpd3 is required to maintain chronic myelogenous leukaemia stem cells10.1038/s41467-020-18491-92041-1723https://doaj.org/article/73aca2b556d542e499ca1a950b353d8d2020-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18491-9https://doaj.org/toc/2041-1723How lipid metabolism can affect cancer recurrence is still unclear. Here, the authors show that the lysophospholipase D Gdpd3 maintains self-renewal capacity of CML stem cells by regulating the quiescence, and AKT/mTORC1 and Foxo3a/β-catenin signalling in an oncogene-independent manner.Kazuhito NakaRyosuke OchiaiEriko MatsubaraChie KondoKyung-Min YangTakayuki HoshiiMasatake ArakiKimi ArakiYusuke SotomaruKo SasakiKinuko MitaniDong-Wook KimAkira OoshimaSeong-Jin KimNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kazuhito Naka
Ryosuke Ochiai
Eriko Matsubara
Chie Kondo
Kyung-Min Yang
Takayuki Hoshii
Masatake Araki
Kimi Araki
Yusuke Sotomaru
Ko Sasaki
Kinuko Mitani
Dong-Wook Kim
Akira Ooshima
Seong-Jin Kim
The lysophospholipase D enzyme Gdpd3 is required to maintain chronic myelogenous leukaemia stem cells
description How lipid metabolism can affect cancer recurrence is still unclear. Here, the authors show that the lysophospholipase D Gdpd3 maintains self-renewal capacity of CML stem cells by regulating the quiescence, and AKT/mTORC1 and Foxo3a/β-catenin signalling in an oncogene-independent manner.
format article
author Kazuhito Naka
Ryosuke Ochiai
Eriko Matsubara
Chie Kondo
Kyung-Min Yang
Takayuki Hoshii
Masatake Araki
Kimi Araki
Yusuke Sotomaru
Ko Sasaki
Kinuko Mitani
Dong-Wook Kim
Akira Ooshima
Seong-Jin Kim
author_facet Kazuhito Naka
Ryosuke Ochiai
Eriko Matsubara
Chie Kondo
Kyung-Min Yang
Takayuki Hoshii
Masatake Araki
Kimi Araki
Yusuke Sotomaru
Ko Sasaki
Kinuko Mitani
Dong-Wook Kim
Akira Ooshima
Seong-Jin Kim
author_sort Kazuhito Naka
title The lysophospholipase D enzyme Gdpd3 is required to maintain chronic myelogenous leukaemia stem cells
title_short The lysophospholipase D enzyme Gdpd3 is required to maintain chronic myelogenous leukaemia stem cells
title_full The lysophospholipase D enzyme Gdpd3 is required to maintain chronic myelogenous leukaemia stem cells
title_fullStr The lysophospholipase D enzyme Gdpd3 is required to maintain chronic myelogenous leukaemia stem cells
title_full_unstemmed The lysophospholipase D enzyme Gdpd3 is required to maintain chronic myelogenous leukaemia stem cells
title_sort lysophospholipase d enzyme gdpd3 is required to maintain chronic myelogenous leukaemia stem cells
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/73aca2b556d542e499ca1a950b353d8d
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