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Uridine-derived ribose fuels glucose-restricted pancreatic cancer
by
Halbrook, Christopher J.
, Sadanandam, Anguraj
, Menjivar, Rosa E.
, Patti, Gary J.
, Apiz-Saab, Juan J.
, Radyk, Megan
, Sutton, Damien
, Shriver, Leah P.
, Pasca di Magliano, Marina
, Lyssiotis, Costas A.
, Dzierozynski, Lindsey N.
, Ugras, Julia
, Ward, Matthew H.
, Sajjakulnukit, Peter
, Nyamundanda, Gift
, Tolstyka, Zachary
, Nwosu, Zeribe C.
, Shi, Jiaqi
, Andren, Anthony
, He, Xi
, Poudel, Pawan
, Zhang, Li
, Lee, Ho-Joon
, Kasperek, Steven
, Brown, Kristee
, Ragulan, Chanthirika
, Muir, Alexander
, PS, Hari
, Carpenter, Eileen S.
in
13/105
/ 13/106
/ 13/51
/ 38
/ 631/45/320
/ 631/67/1504/1713
/ 631/67/2327
/ 64
/ 82
/ 82/51
/ 82/58
/ Adenocarcinoma
/ Adenosine
/ Amino acids
/ Animal models
/ Animals
/ Carbon
/ Carcinoma, Pancreatic Ductal - metabolism
/ Carcinoma, Pancreatic Ductal - pathology
/ Cell Division
/ Cell Line, Tumor
/ Cell proliferation
/ Cells
/ Dietary restrictions
/ Extracellular matrix
/ Fuels
/ Genes
/ Glucose
/ Glucose - deficiency
/ Humanities and Social Sciences
/ Humans
/ Immunocompetence
/ MAP kinase
/ MAP Kinase Signaling System
/ Metabolism
/ Metabolites
/ Mice
/ multidisciplinary
/ Nutrient utilization
/ Nutrients
/ Pancreatic cancer
/ Pancreatic Neoplasms - metabolism
/ Pancreatic Neoplasms - pathology
/ Phosphorylase
/ Ribose
/ Ribose - metabolism
/ Science
/ Science (multidisciplinary)
/ Survival
/ Tumor Microenvironment
/ Tumors
/ Uridine
/ Uridine - chemistry
/ Uridine phosphorylase
/ Uridine Phosphorylase - deficiency
/ Uridine Phosphorylase - genetics
/ Uridine Phosphorylase - metabolism
2023
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Uridine-derived ribose fuels glucose-restricted pancreatic cancer
by
Halbrook, Christopher J.
, Sadanandam, Anguraj
, Menjivar, Rosa E.
, Patti, Gary J.
, Apiz-Saab, Juan J.
, Radyk, Megan
, Sutton, Damien
, Shriver, Leah P.
, Pasca di Magliano, Marina
, Lyssiotis, Costas A.
, Dzierozynski, Lindsey N.
, Ugras, Julia
, Ward, Matthew H.
, Sajjakulnukit, Peter
, Nyamundanda, Gift
, Tolstyka, Zachary
, Nwosu, Zeribe C.
, Shi, Jiaqi
, Andren, Anthony
, He, Xi
, Poudel, Pawan
, Zhang, Li
, Lee, Ho-Joon
, Kasperek, Steven
, Brown, Kristee
, Ragulan, Chanthirika
, Muir, Alexander
, PS, Hari
, Carpenter, Eileen S.
in
13/105
/ 13/106
/ 13/51
/ 38
/ 631/45/320
/ 631/67/1504/1713
/ 631/67/2327
/ 64
/ 82
/ 82/51
/ 82/58
/ Adenocarcinoma
/ Adenosine
/ Amino acids
/ Animal models
/ Animals
/ Carbon
/ Carcinoma, Pancreatic Ductal - metabolism
/ Carcinoma, Pancreatic Ductal - pathology
/ Cell Division
/ Cell Line, Tumor
/ Cell proliferation
/ Cells
/ Dietary restrictions
/ Extracellular matrix
/ Fuels
/ Genes
/ Glucose
/ Glucose - deficiency
/ Humanities and Social Sciences
/ Humans
/ Immunocompetence
/ MAP kinase
/ MAP Kinase Signaling System
/ Metabolism
/ Metabolites
/ Mice
/ multidisciplinary
/ Nutrient utilization
/ Nutrients
/ Pancreatic cancer
/ Pancreatic Neoplasms - metabolism
/ Pancreatic Neoplasms - pathology
/ Phosphorylase
/ Ribose
/ Ribose - metabolism
/ Science
/ Science (multidisciplinary)
/ Survival
/ Tumor Microenvironment
/ Tumors
/ Uridine
/ Uridine - chemistry
/ Uridine phosphorylase
/ Uridine Phosphorylase - deficiency
/ Uridine Phosphorylase - genetics
/ Uridine Phosphorylase - metabolism
2023
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Uridine-derived ribose fuels glucose-restricted pancreatic cancer
by
Halbrook, Christopher J.
, Sadanandam, Anguraj
, Menjivar, Rosa E.
, Patti, Gary J.
, Apiz-Saab, Juan J.
, Radyk, Megan
, Sutton, Damien
, Shriver, Leah P.
, Pasca di Magliano, Marina
, Lyssiotis, Costas A.
, Dzierozynski, Lindsey N.
, Ugras, Julia
, Ward, Matthew H.
, Sajjakulnukit, Peter
, Nyamundanda, Gift
, Tolstyka, Zachary
, Nwosu, Zeribe C.
, Shi, Jiaqi
, Andren, Anthony
, He, Xi
, Poudel, Pawan
, Zhang, Li
, Lee, Ho-Joon
, Kasperek, Steven
, Brown, Kristee
, Ragulan, Chanthirika
, Muir, Alexander
, PS, Hari
, Carpenter, Eileen S.
in
13/105
/ 13/106
/ 13/51
/ 38
/ 631/45/320
/ 631/67/1504/1713
/ 631/67/2327
/ 64
/ 82
/ 82/51
/ 82/58
/ Adenocarcinoma
/ Adenosine
/ Amino acids
/ Animal models
/ Animals
/ Carbon
/ Carcinoma, Pancreatic Ductal - metabolism
/ Carcinoma, Pancreatic Ductal - pathology
/ Cell Division
/ Cell Line, Tumor
/ Cell proliferation
/ Cells
/ Dietary restrictions
/ Extracellular matrix
/ Fuels
/ Genes
/ Glucose
/ Glucose - deficiency
/ Humanities and Social Sciences
/ Humans
/ Immunocompetence
/ MAP kinase
/ MAP Kinase Signaling System
/ Metabolism
/ Metabolites
/ Mice
/ multidisciplinary
/ Nutrient utilization
/ Nutrients
/ Pancreatic cancer
/ Pancreatic Neoplasms - metabolism
/ Pancreatic Neoplasms - pathology
/ Phosphorylase
/ Ribose
/ Ribose - metabolism
/ Science
/ Science (multidisciplinary)
/ Survival
/ Tumor Microenvironment
/ Tumors
/ Uridine
/ Uridine - chemistry
/ Uridine phosphorylase
/ Uridine Phosphorylase - deficiency
/ Uridine Phosphorylase - genetics
/ Uridine Phosphorylase - metabolism
2023
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Uridine-derived ribose fuels glucose-restricted pancreatic cancer
Journal Article
Uridine-derived ribose fuels glucose-restricted pancreatic cancer
2023
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Overview
Pancreatic ductal adenocarcinoma (PDA) is a lethal disease notoriously resistant to therapy
1
,
2
. This is mediated in part by a complex tumour microenvironment
3
, low vascularity
4
, and metabolic aberrations
5
,
6
. Although altered metabolism drives tumour progression, the spectrum of metabolites used as nutrients by PDA remains largely unknown. Here we identified uridine as a fuel for PDA in glucose-deprived conditions by assessing how more than 175 metabolites impacted metabolic activity in 21 pancreatic cell lines under nutrient restriction. Uridine utilization strongly correlated with the expression of uridine phosphorylase 1 (UPP1), which we demonstrate liberates uridine-derived ribose to fuel central carbon metabolism and thereby support redox balance, survival and proliferation in glucose-restricted PDA cells. In PDA,
UPP1
is regulated by KRAS–MAPK signalling and is augmented by nutrient restriction. Consistently, tumours expressed high
UPP1
compared with non-tumoural tissues, and
UPP1
expression correlated with poor survival in cohorts of patients with PDA. Uridine is available in the tumour microenvironment, and we demonstrated that uridine-derived ribose is actively catabolized in tumours. Finally, UPP1 deletion restricted the ability of PDA cells to use uridine and blunted tumour growth in immunocompetent mouse models. Our data identify uridine utilization as an important compensatory metabolic process in nutrient-deprived PDA cells, suggesting a novel metabolic axis for PDA therapy.
A metabolite screen of pancreatic cells shows that pancreatic cancer cells metabolize uridine-derived ribose via UPP1, supporting redox balance, survival and proliferation.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
/ 13/106
/ 13/51
/ 38
/ 64
/ 82
/ 82/51
/ 82/58
/ Animals
/ Carbon
/ Carcinoma, Pancreatic Ductal - metabolism
/ Carcinoma, Pancreatic Ductal - pathology
/ Cells
/ Fuels
/ Genes
/ Glucose
/ Humanities and Social Sciences
/ Humans
/ Mice
/ Pancreatic Neoplasms - metabolism
/ Pancreatic Neoplasms - pathology
/ Ribose
/ Science
/ Survival
/ Tumors
/ Uridine
/ Uridine Phosphorylase - deficiency
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