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Knockout of Putative Tumor Suppressor Aldh1l1 in Mice Reprograms Metabolism to Accelerate Growth of Tumors in a Diethylnitrosamine (DEN) Model of Liver Carcinogenesis

SIMPLE SUMMARY: Cancers often loose the enzyme of folate metabolism ALDH1L1. We proposed that such loss is advantageous for the malignant tumor growth and tested this hypothesis in mice proficient or deficient (gene knockout) in ALDH1L1 expression. Liver cancer in both groups was induced by injectio...

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Autores principales: Krupenko, Natalia I., Sharma, Jaspreet, Fogle, Halle M., Pediaditakis, Peter, Strickland, Kyle C., Du, Xiuxia, Helke, Kristi L., Sumner, Susan, Krupenko, Sergey A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8268287/
https://www.ncbi.nlm.nih.gov/pubmed/34203215
http://dx.doi.org/10.3390/cancers13133219
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author Krupenko, Natalia I.
Sharma, Jaspreet
Fogle, Halle M.
Pediaditakis, Peter
Strickland, Kyle C.
Du, Xiuxia
Helke, Kristi L.
Sumner, Susan
Krupenko, Sergey A.
author_facet Krupenko, Natalia I.
Sharma, Jaspreet
Fogle, Halle M.
Pediaditakis, Peter
Strickland, Kyle C.
Du, Xiuxia
Helke, Kristi L.
Sumner, Susan
Krupenko, Sergey A.
author_sort Krupenko, Natalia I.
collection PubMed
description SIMPLE SUMMARY: Cancers often loose the enzyme of folate metabolism ALDH1L1. We proposed that such loss is advantageous for the malignant tumor growth and tested this hypothesis in mice proficient or deficient (gene knockout) in ALDH1L1 expression. Liver cancer in both groups was induced by injection of chemical carcinogen diethylnitrosamine. While the number of tumors observed in ALDH1L1 proficient and deficient mice was similar, tumors grew faster and to a larger size in the knockout mice. We conclude that the ALDH1L1 loss promotes liver tumor growth without affecting tumor initiation or multiplicity. Accelerated growth of tumors lacking the enzyme was linked to several metabolic pathways, which are beneficial for rapid proliferation. ABSTRACT: Cytosolic 10-formyltetrahydrofolate dehydrogenase (ALDH1L1) is commonly downregulated in human cancers through promoter methylation. We proposed that ALDH1L1 loss promotes malignant tumor growth. Here, we investigated the effect of the Aldh1l1 mouse knockout (Aldh1l1(−/−)) on hepatocellular carcinoma using a chemical carcinogenesis model. Fifteen-day-old male Aldh1l1 knockout mice and their wild-type littermate controls (Aldh1l1(+/+)) were injected intraperitoneally with 20 μg/g body weight of DEN (diethylnitrosamine). Mice were sacrificed 10, 20, 28, and 36 weeks post-DEN injection, and livers were examined for tumor multiplicity and size. We observed that while tumor multiplicity did not differ between Aldh1l1(−/−) and Aldh1l1(+/+) animals, larger tumors grew in Aldh1l1(−/−) compared to Aldh1l1(+/+) mice at 28 and 36 weeks. Profound differences between Aldh1l1(−/−) and Aldh1l1(+/+) mice in the expression of inflammation-related genes were seen at 10 and 20 weeks. Of note, large tumors from wild-type mice showed a strong decrease of ALDH1L1 protein at 36 weeks. Metabolomic analysis of liver tissues at 20 weeks showed stronger differences in Aldh1l1(+/+) versus Aldh1l1(−/−) metabotypes than at 10 weeks, which underscores metabolic pathways that respond to DEN in an ALDH1L1-dependent manner. Our study indicates that Aldh1l1 knockout promoted liver tumor growth without affecting tumor initiation or multiplicity.
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spelling pubmed-82682872021-07-10 Knockout of Putative Tumor Suppressor Aldh1l1 in Mice Reprograms Metabolism to Accelerate Growth of Tumors in a Diethylnitrosamine (DEN) Model of Liver Carcinogenesis Krupenko, Natalia I. Sharma, Jaspreet Fogle, Halle M. Pediaditakis, Peter Strickland, Kyle C. Du, Xiuxia Helke, Kristi L. Sumner, Susan Krupenko, Sergey A. Cancers (Basel) Article SIMPLE SUMMARY: Cancers often loose the enzyme of folate metabolism ALDH1L1. We proposed that such loss is advantageous for the malignant tumor growth and tested this hypothesis in mice proficient or deficient (gene knockout) in ALDH1L1 expression. Liver cancer in both groups was induced by injection of chemical carcinogen diethylnitrosamine. While the number of tumors observed in ALDH1L1 proficient and deficient mice was similar, tumors grew faster and to a larger size in the knockout mice. We conclude that the ALDH1L1 loss promotes liver tumor growth without affecting tumor initiation or multiplicity. Accelerated growth of tumors lacking the enzyme was linked to several metabolic pathways, which are beneficial for rapid proliferation. ABSTRACT: Cytosolic 10-formyltetrahydrofolate dehydrogenase (ALDH1L1) is commonly downregulated in human cancers through promoter methylation. We proposed that ALDH1L1 loss promotes malignant tumor growth. Here, we investigated the effect of the Aldh1l1 mouse knockout (Aldh1l1(−/−)) on hepatocellular carcinoma using a chemical carcinogenesis model. Fifteen-day-old male Aldh1l1 knockout mice and their wild-type littermate controls (Aldh1l1(+/+)) were injected intraperitoneally with 20 μg/g body weight of DEN (diethylnitrosamine). Mice were sacrificed 10, 20, 28, and 36 weeks post-DEN injection, and livers were examined for tumor multiplicity and size. We observed that while tumor multiplicity did not differ between Aldh1l1(−/−) and Aldh1l1(+/+) animals, larger tumors grew in Aldh1l1(−/−) compared to Aldh1l1(+/+) mice at 28 and 36 weeks. Profound differences between Aldh1l1(−/−) and Aldh1l1(+/+) mice in the expression of inflammation-related genes were seen at 10 and 20 weeks. Of note, large tumors from wild-type mice showed a strong decrease of ALDH1L1 protein at 36 weeks. Metabolomic analysis of liver tissues at 20 weeks showed stronger differences in Aldh1l1(+/+) versus Aldh1l1(−/−) metabotypes than at 10 weeks, which underscores metabolic pathways that respond to DEN in an ALDH1L1-dependent manner. Our study indicates that Aldh1l1 knockout promoted liver tumor growth without affecting tumor initiation or multiplicity. MDPI 2021-06-28 /pmc/articles/PMC8268287/ /pubmed/34203215 http://dx.doi.org/10.3390/cancers13133219 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Krupenko, Natalia I.
Sharma, Jaspreet
Fogle, Halle M.
Pediaditakis, Peter
Strickland, Kyle C.
Du, Xiuxia
Helke, Kristi L.
Sumner, Susan
Krupenko, Sergey A.
Knockout of Putative Tumor Suppressor Aldh1l1 in Mice Reprograms Metabolism to Accelerate Growth of Tumors in a Diethylnitrosamine (DEN) Model of Liver Carcinogenesis
title Knockout of Putative Tumor Suppressor Aldh1l1 in Mice Reprograms Metabolism to Accelerate Growth of Tumors in a Diethylnitrosamine (DEN) Model of Liver Carcinogenesis
title_full Knockout of Putative Tumor Suppressor Aldh1l1 in Mice Reprograms Metabolism to Accelerate Growth of Tumors in a Diethylnitrosamine (DEN) Model of Liver Carcinogenesis
title_fullStr Knockout of Putative Tumor Suppressor Aldh1l1 in Mice Reprograms Metabolism to Accelerate Growth of Tumors in a Diethylnitrosamine (DEN) Model of Liver Carcinogenesis
title_full_unstemmed Knockout of Putative Tumor Suppressor Aldh1l1 in Mice Reprograms Metabolism to Accelerate Growth of Tumors in a Diethylnitrosamine (DEN) Model of Liver Carcinogenesis
title_short Knockout of Putative Tumor Suppressor Aldh1l1 in Mice Reprograms Metabolism to Accelerate Growth of Tumors in a Diethylnitrosamine (DEN) Model of Liver Carcinogenesis
title_sort knockout of putative tumor suppressor aldh1l1 in mice reprograms metabolism to accelerate growth of tumors in a diethylnitrosamine (den) model of liver carcinogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8268287/
https://www.ncbi.nlm.nih.gov/pubmed/34203215
http://dx.doi.org/10.3390/cancers13133219
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