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BCDIN3D RNA methyltransferase stimulates Aldolase C expression and glycolysis through let-7 microRNA in breast cancer cells

Type II diabetes (T2D) and specific cancers share many risk factors, however the molecular mechanisms underlying these connections are often not well-understood. BCDIN3D is an RNA modifying enzyme that methylates specific precursor microRNAs and tRNA(His). In addition to breast cancer, BCDIN3D may a...

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Autores principales: Reinsborough, Calder W, Ipas, Hélène, Abell, Nathan S, Gouws, Ellen B, Williams, J Paige, Mercado, Marvin, Van Den Berg, Carla, Xhemalçe, Blerta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8026734/
https://www.ncbi.nlm.nih.gov/pubmed/33664453
http://dx.doi.org/10.1038/s41388-021-01702-y
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author Reinsborough, Calder W
Ipas, Hélène
Abell, Nathan S
Gouws, Ellen B
Williams, J Paige
Mercado, Marvin
Van Den Berg, Carla
Xhemalçe, Blerta
author_facet Reinsborough, Calder W
Ipas, Hélène
Abell, Nathan S
Gouws, Ellen B
Williams, J Paige
Mercado, Marvin
Van Den Berg, Carla
Xhemalçe, Blerta
author_sort Reinsborough, Calder W
collection PubMed
description Type II diabetes (T2D) and specific cancers share many risk factors, however the molecular mechanisms underlying these connections are often not well-understood. BCDIN3D is an RNA modifying enzyme that methylates specific precursor microRNAs and tRNA(His). In addition to breast cancer, BCDIN3D may also be linked to metabolism, as its gene locus is associated with obesity and T2D. In order to uncover metabolic pathways regulated by BCDIN3D in cancer, we performed an unbiased analysis of the metabolome, transcriptome, and proteome of breast cancer cells depleted for BCDIN3D. Intersection of these analyses showed that BCDIN3D-depleted cells have increased levels of Fructose 1,6 Bisphosphate (F1,6-BP), the last six-carbon glycolytic intermediate accompanied by reduced glycolytic capacity. We further show that elevated F1,6-BP is due to downregulation of Aldolase C (ALDOC), an enzyme that cleaves F1,6-BP mainly in the brain, but whose high expression/amplification is associated with poor prognosis in breast cancer. BCDIN3D regulates ALDOC through a non-canonical mechanism involving the crucial let-7 microRNA family and its target site on the 3’UTR of ALDOC. Overall, our results reveal an important connection between BCDIN3D, let-7 and glycolysis that may be relevant to breast cancer, obesity and T2D.
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spelling pubmed-80267342021-09-04 BCDIN3D RNA methyltransferase stimulates Aldolase C expression and glycolysis through let-7 microRNA in breast cancer cells Reinsborough, Calder W Ipas, Hélène Abell, Nathan S Gouws, Ellen B Williams, J Paige Mercado, Marvin Van Den Berg, Carla Xhemalçe, Blerta Oncogene Article Type II diabetes (T2D) and specific cancers share many risk factors, however the molecular mechanisms underlying these connections are often not well-understood. BCDIN3D is an RNA modifying enzyme that methylates specific precursor microRNAs and tRNA(His). In addition to breast cancer, BCDIN3D may also be linked to metabolism, as its gene locus is associated with obesity and T2D. In order to uncover metabolic pathways regulated by BCDIN3D in cancer, we performed an unbiased analysis of the metabolome, transcriptome, and proteome of breast cancer cells depleted for BCDIN3D. Intersection of these analyses showed that BCDIN3D-depleted cells have increased levels of Fructose 1,6 Bisphosphate (F1,6-BP), the last six-carbon glycolytic intermediate accompanied by reduced glycolytic capacity. We further show that elevated F1,6-BP is due to downregulation of Aldolase C (ALDOC), an enzyme that cleaves F1,6-BP mainly in the brain, but whose high expression/amplification is associated with poor prognosis in breast cancer. BCDIN3D regulates ALDOC through a non-canonical mechanism involving the crucial let-7 microRNA family and its target site on the 3’UTR of ALDOC. Overall, our results reveal an important connection between BCDIN3D, let-7 and glycolysis that may be relevant to breast cancer, obesity and T2D. 2021-03-04 2021-04 /pmc/articles/PMC8026734/ /pubmed/33664453 http://dx.doi.org/10.1038/s41388-021-01702-y Text en http://www.nature.com/authors/editorial_policies/license.html#termsUsers 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
Reinsborough, Calder W
Ipas, Hélène
Abell, Nathan S
Gouws, Ellen B
Williams, J Paige
Mercado, Marvin
Van Den Berg, Carla
Xhemalçe, Blerta
BCDIN3D RNA methyltransferase stimulates Aldolase C expression and glycolysis through let-7 microRNA in breast cancer cells
title BCDIN3D RNA methyltransferase stimulates Aldolase C expression and glycolysis through let-7 microRNA in breast cancer cells
title_full BCDIN3D RNA methyltransferase stimulates Aldolase C expression and glycolysis through let-7 microRNA in breast cancer cells
title_fullStr BCDIN3D RNA methyltransferase stimulates Aldolase C expression and glycolysis through let-7 microRNA in breast cancer cells
title_full_unstemmed BCDIN3D RNA methyltransferase stimulates Aldolase C expression and glycolysis through let-7 microRNA in breast cancer cells
title_short BCDIN3D RNA methyltransferase stimulates Aldolase C expression and glycolysis through let-7 microRNA in breast cancer cells
title_sort bcdin3d rna methyltransferase stimulates aldolase c expression and glycolysis through let-7 microrna in breast cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8026734/
https://www.ncbi.nlm.nih.gov/pubmed/33664453
http://dx.doi.org/10.1038/s41388-021-01702-y
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