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PI3K/ c-Myc/AFF4 axis promotes pancreatic tumorigenesis through fueling nucleotide metabolism

MLL-AFF4 fusion gene has been discovered in acute leukemia, whether AFF4 alone plays a role in tumor, especially pancreatic tumorigenesis, is still elusive. Increasing evidence suggests that cancer cells altered nucleotide metabolism during tumorigenesis. In present study, we observed AFF4 overexpre...

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Autores principales: Ni, Chenming, Liu, Wenyu, Zheng, Kailian, Guo, Shiwei, Song, Bin, Jing, Wei, Li, Gang, Li, Bo, Ni, Canrong, Shi, Keqing, Jin, Gang, Yu, Guanzhen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10092763/
https://www.ncbi.nlm.nih.gov/pubmed/37063434
http://dx.doi.org/10.7150/ijbs.77150
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author Ni, Chenming
Liu, Wenyu
Zheng, Kailian
Guo, Shiwei
Song, Bin
Jing, Wei
Li, Gang
Li, Bo
Ni, Canrong
Shi, Keqing
Jin, Gang
Yu, Guanzhen
author_facet Ni, Chenming
Liu, Wenyu
Zheng, Kailian
Guo, Shiwei
Song, Bin
Jing, Wei
Li, Gang
Li, Bo
Ni, Canrong
Shi, Keqing
Jin, Gang
Yu, Guanzhen
author_sort Ni, Chenming
collection PubMed
description MLL-AFF4 fusion gene has been discovered in acute leukemia, whether AFF4 alone plays a role in tumor, especially pancreatic tumorigenesis, is still elusive. Increasing evidence suggests that cancer cells altered nucleotide metabolism during tumorigenesis. In present study, we observed AFF4 overexpression promoted cell proliferation, colony formation and cell cycle progression while loss of AFF4 impairs above phenotypes of pancreatic ductal carcinoma (PDAC) cells. Using RNA-profiling, we revealed that HPRT1 and IMPDH2, two enzymes in the nucleotide metabolism pathway, were upregulated following AFF4 overexpression. Simultaneous expression of HPRT1 and IMPDH2 would mainly rescue the phenotypes of cells lacking AFF4. Additionally, xenograft study proved HPRT1 and IMPDH2 genetically function in the downstream of AFF4, which was recruited by PAX2 when CDK9 mediated AFF4 phosphorylation at S388 and drove HPRT1 and IMPDH2 expression. We further discovered PI3K/c-Myc axis is required for AFF4 expression in PDAC cells. Finally, we obtained the positive correlation between c-Myc and AFF4 or AFF4 and HPRT1/IMPDH2 in clinical PDAC samples. Otherwise, we conducted data-mining and found that the expression levels of AFF4 and HPRT1/IMPDH2 are correlated with patients' prognosis, establishing AFF4 as a potential biomarker and therapeutic target for PDAC.
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spelling pubmed-100927632023-04-13 PI3K/ c-Myc/AFF4 axis promotes pancreatic tumorigenesis through fueling nucleotide metabolism Ni, Chenming Liu, Wenyu Zheng, Kailian Guo, Shiwei Song, Bin Jing, Wei Li, Gang Li, Bo Ni, Canrong Shi, Keqing Jin, Gang Yu, Guanzhen Int J Biol Sci Research Paper MLL-AFF4 fusion gene has been discovered in acute leukemia, whether AFF4 alone plays a role in tumor, especially pancreatic tumorigenesis, is still elusive. Increasing evidence suggests that cancer cells altered nucleotide metabolism during tumorigenesis. In present study, we observed AFF4 overexpression promoted cell proliferation, colony formation and cell cycle progression while loss of AFF4 impairs above phenotypes of pancreatic ductal carcinoma (PDAC) cells. Using RNA-profiling, we revealed that HPRT1 and IMPDH2, two enzymes in the nucleotide metabolism pathway, were upregulated following AFF4 overexpression. Simultaneous expression of HPRT1 and IMPDH2 would mainly rescue the phenotypes of cells lacking AFF4. Additionally, xenograft study proved HPRT1 and IMPDH2 genetically function in the downstream of AFF4, which was recruited by PAX2 when CDK9 mediated AFF4 phosphorylation at S388 and drove HPRT1 and IMPDH2 expression. We further discovered PI3K/c-Myc axis is required for AFF4 expression in PDAC cells. Finally, we obtained the positive correlation between c-Myc and AFF4 or AFF4 and HPRT1/IMPDH2 in clinical PDAC samples. Otherwise, we conducted data-mining and found that the expression levels of AFF4 and HPRT1/IMPDH2 are correlated with patients' prognosis, establishing AFF4 as a potential biomarker and therapeutic target for PDAC. Ivyspring International Publisher 2023-03-27 /pmc/articles/PMC10092763/ /pubmed/37063434 http://dx.doi.org/10.7150/ijbs.77150 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Ni, Chenming
Liu, Wenyu
Zheng, Kailian
Guo, Shiwei
Song, Bin
Jing, Wei
Li, Gang
Li, Bo
Ni, Canrong
Shi, Keqing
Jin, Gang
Yu, Guanzhen
PI3K/ c-Myc/AFF4 axis promotes pancreatic tumorigenesis through fueling nucleotide metabolism
title PI3K/ c-Myc/AFF4 axis promotes pancreatic tumorigenesis through fueling nucleotide metabolism
title_full PI3K/ c-Myc/AFF4 axis promotes pancreatic tumorigenesis through fueling nucleotide metabolism
title_fullStr PI3K/ c-Myc/AFF4 axis promotes pancreatic tumorigenesis through fueling nucleotide metabolism
title_full_unstemmed PI3K/ c-Myc/AFF4 axis promotes pancreatic tumorigenesis through fueling nucleotide metabolism
title_short PI3K/ c-Myc/AFF4 axis promotes pancreatic tumorigenesis through fueling nucleotide metabolism
title_sort pi3k/ c-myc/aff4 axis promotes pancreatic tumorigenesis through fueling nucleotide metabolism
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10092763/
https://www.ncbi.nlm.nih.gov/pubmed/37063434
http://dx.doi.org/10.7150/ijbs.77150
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