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Downregulating Notch counteracts Kras(G12D)-induced ERK activation and oxidative phosphorylation in myeloproliferative neoplasm

The Notch signaling pathway contributes to the pathogenesis of a wide spectrum of human cancers, including hematopoietic malignancies. Its functions are highly dependent on the specific cellular context. Gain-of-function NOTCH1 mutations are prevalent in human T cell leukemia, while loss of Notch si...

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Autores principales: Kong, Guangyao, You, Xiaona, Wen, Zhi, Chang, Yuan-I, Qian, Shuiming, Ranheim, Erik A., Letson, Christopher, Zhang, Xinmin, Zhou, Yun, Liu, Yangang, Rajagopalan, Adhithi, Zhang, Jingfang, Hofmann-Zhang, Inga, Zhong, Xuehua, Padron, Eric, Zhou, Lan, Pear, Warren S., Zhang, Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6405304/
https://www.ncbi.nlm.nih.gov/pubmed/30206308
http://dx.doi.org/10.1038/s41375-018-0248-0
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author Kong, Guangyao
You, Xiaona
Wen, Zhi
Chang, Yuan-I
Qian, Shuiming
Ranheim, Erik A.
Letson, Christopher
Zhang, Xinmin
Zhou, Yun
Liu, Yangang
Rajagopalan, Adhithi
Zhang, Jingfang
Hofmann-Zhang, Inga
Zhong, Xuehua
Padron, Eric
Zhou, Lan
Pear, Warren S.
Zhang, Jing
author_facet Kong, Guangyao
You, Xiaona
Wen, Zhi
Chang, Yuan-I
Qian, Shuiming
Ranheim, Erik A.
Letson, Christopher
Zhang, Xinmin
Zhou, Yun
Liu, Yangang
Rajagopalan, Adhithi
Zhang, Jingfang
Hofmann-Zhang, Inga
Zhong, Xuehua
Padron, Eric
Zhou, Lan
Pear, Warren S.
Zhang, Jing
author_sort Kong, Guangyao
collection PubMed
description The Notch signaling pathway contributes to the pathogenesis of a wide spectrum of human cancers, including hematopoietic malignancies. Its functions are highly dependent on the specific cellular context. Gain-of-function NOTCH1 mutations are prevalent in human T cell leukemia, while loss of Notch signaling is reported in myeloid leukemias. Here, we report a novel oncogenic function of Notch signaling in oncogenic Kras-induced myeloproliferative neoplasm (MPN). We find that downregulation of Notch signaling in hematopoietic cells via DNMAML expression or Pofut1 deletion significantly blocks MPN development in Kras(G12D) mice in a cell-autonomous manner. Further mechanistic studies indicate that inhibition of Notch signaling significantly upregulates Dusp1, a dual phosphatase that inactivates p-ERK, and downregulates cytokine-evoked ERK activation in Kras(G12D) cells. Moreover, mitochondrial metabolism is greatly enhanced in Kras(G12D) cells but significantly reprogrammed by DNMAML close to that in control cells. Consequently, cell proliferation and expanded myeloid compartment in Kras(G12D) mice are significantly reduced. Consistent with these findings, combined inhibition of the MEK/ERK pathway and mitochondrial oxidative phosphorylation effectively inhibited the growth of human and mouse leukemia cells in vitro. Our study provides a strong rational to target both ERK signaling and aberrant metabolism in oncogenic Ras-driven myeloid leukemia.
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spelling pubmed-64053042019-03-11 Downregulating Notch counteracts Kras(G12D)-induced ERK activation and oxidative phosphorylation in myeloproliferative neoplasm Kong, Guangyao You, Xiaona Wen, Zhi Chang, Yuan-I Qian, Shuiming Ranheim, Erik A. Letson, Christopher Zhang, Xinmin Zhou, Yun Liu, Yangang Rajagopalan, Adhithi Zhang, Jingfang Hofmann-Zhang, Inga Zhong, Xuehua Padron, Eric Zhou, Lan Pear, Warren S. Zhang, Jing Leukemia Article The Notch signaling pathway contributes to the pathogenesis of a wide spectrum of human cancers, including hematopoietic malignancies. Its functions are highly dependent on the specific cellular context. Gain-of-function NOTCH1 mutations are prevalent in human T cell leukemia, while loss of Notch signaling is reported in myeloid leukemias. Here, we report a novel oncogenic function of Notch signaling in oncogenic Kras-induced myeloproliferative neoplasm (MPN). We find that downregulation of Notch signaling in hematopoietic cells via DNMAML expression or Pofut1 deletion significantly blocks MPN development in Kras(G12D) mice in a cell-autonomous manner. Further mechanistic studies indicate that inhibition of Notch signaling significantly upregulates Dusp1, a dual phosphatase that inactivates p-ERK, and downregulates cytokine-evoked ERK activation in Kras(G12D) cells. Moreover, mitochondrial metabolism is greatly enhanced in Kras(G12D) cells but significantly reprogrammed by DNMAML close to that in control cells. Consequently, cell proliferation and expanded myeloid compartment in Kras(G12D) mice are significantly reduced. Consistent with these findings, combined inhibition of the MEK/ERK pathway and mitochondrial oxidative phosphorylation effectively inhibited the growth of human and mouse leukemia cells in vitro. Our study provides a strong rational to target both ERK signaling and aberrant metabolism in oncogenic Ras-driven myeloid leukemia. 2018-09-11 2019-03 /pmc/articles/PMC6405304/ /pubmed/30206308 http://dx.doi.org/10.1038/s41375-018-0248-0 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Kong, Guangyao
You, Xiaona
Wen, Zhi
Chang, Yuan-I
Qian, Shuiming
Ranheim, Erik A.
Letson, Christopher
Zhang, Xinmin
Zhou, Yun
Liu, Yangang
Rajagopalan, Adhithi
Zhang, Jingfang
Hofmann-Zhang, Inga
Zhong, Xuehua
Padron, Eric
Zhou, Lan
Pear, Warren S.
Zhang, Jing
Downregulating Notch counteracts Kras(G12D)-induced ERK activation and oxidative phosphorylation in myeloproliferative neoplasm
title Downregulating Notch counteracts Kras(G12D)-induced ERK activation and oxidative phosphorylation in myeloproliferative neoplasm
title_full Downregulating Notch counteracts Kras(G12D)-induced ERK activation and oxidative phosphorylation in myeloproliferative neoplasm
title_fullStr Downregulating Notch counteracts Kras(G12D)-induced ERK activation and oxidative phosphorylation in myeloproliferative neoplasm
title_full_unstemmed Downregulating Notch counteracts Kras(G12D)-induced ERK activation and oxidative phosphorylation in myeloproliferative neoplasm
title_short Downregulating Notch counteracts Kras(G12D)-induced ERK activation and oxidative phosphorylation in myeloproliferative neoplasm
title_sort downregulating notch counteracts kras(g12d)-induced erk activation and oxidative phosphorylation in myeloproliferative neoplasm
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6405304/
https://www.ncbi.nlm.nih.gov/pubmed/30206308
http://dx.doi.org/10.1038/s41375-018-0248-0
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