Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

The Leloir Cycle in Glioblastoma: Galactose Scavenging and Metabolic Remodeling

View through CrossRef
Background: Glioblastoma (GBM) can use metabolic fuels other than glucose (Glc). The ability of GBM to use galactose (Gal) as a fuel via the Leloir pathway is investigated. Methods: Gene transcript data were accessed to determine the association between expression of genes of the Leloir pathway and patient outcomes. Growth studies were performed on five primary patient-derived GBM cultures using Glc-free media supplemented with Gal. The role of Glut3/Glut14 in sugar import was investigated using antibody inhibition of hexose transport. A specific inhibitor of GALK1 (Cpd36) was used to inhibit Gal catabolism. Gal metabolism was examined using proton, carbon and phosphorous NMR spectroscopy, with 13C-labeled Glc and Gal as tracers. Results: Data analysis from published databases revealed that elevated levels of mRNA transcripts of SLC2A3 (Glut3), SLC2A14 (Glut14) and key Leloir pathway enzymes correlate with poor patient outcomes. GBM cultures proliferated when grown solely on Gal in Glc-free media and switching Glc-grown GBM cells into Gal-enriched/Glc-free media produced elevated levels of Glut3 and/or Glut14 enzymes. The 13C NMR-based metabolic flux analysis demonstrated a fully functional Leloir pathway and elevated pentose phosphate pathway activity for efficient Gal metabolism in GBM cells. Conclusion: Expression of Glut3 and/or Glut14 together with the enzymes of the Leloir pathway allows GBM to transport and metabolize Gal at physiological glucose concentrations, providing GBM cells with an alternate energy source. The presence of this pathway in GBM and its selective targeting may provide new treatment strategies.
Title: The Leloir Cycle in Glioblastoma: Galactose Scavenging and Metabolic Remodeling
Description:
Background: Glioblastoma (GBM) can use metabolic fuels other than glucose (Glc).
The ability of GBM to use galactose (Gal) as a fuel via the Leloir pathway is investigated.
Methods: Gene transcript data were accessed to determine the association between expression of genes of the Leloir pathway and patient outcomes.
Growth studies were performed on five primary patient-derived GBM cultures using Glc-free media supplemented with Gal.
The role of Glut3/Glut14 in sugar import was investigated using antibody inhibition of hexose transport.
A specific inhibitor of GALK1 (Cpd36) was used to inhibit Gal catabolism.
Gal metabolism was examined using proton, carbon and phosphorous NMR spectroscopy, with 13C-labeled Glc and Gal as tracers.
Results: Data analysis from published databases revealed that elevated levels of mRNA transcripts of SLC2A3 (Glut3), SLC2A14 (Glut14) and key Leloir pathway enzymes correlate with poor patient outcomes.
GBM cultures proliferated when grown solely on Gal in Glc-free media and switching Glc-grown GBM cells into Gal-enriched/Glc-free media produced elevated levels of Glut3 and/or Glut14 enzymes.
The 13C NMR-based metabolic flux analysis demonstrated a fully functional Leloir pathway and elevated pentose phosphate pathway activity for efficient Gal metabolism in GBM cells.
Conclusion: Expression of Glut3 and/or Glut14 together with the enzymes of the Leloir pathway allows GBM to transport and metabolize Gal at physiological glucose concentrations, providing GBM cells with an alternate energy source.
The presence of this pathway in GBM and its selective targeting may provide new treatment strategies.

Related Results

Investigating the role of the apelinergic system in glioblastoma
Investigating the role of the apelinergic system in glioblastoma
<p>Elucidating the molecular signalling circuitry that underpins the pathogenesis of cancers is critical to understanding and developing effective treatment paradigms for can...
Glioblastoma: Características Histopatológicas e Marcadores Diagnósticos
Glioblastoma: Características Histopatológicas e Marcadores Diagnósticos
O glioblastoma representa a neoplasia maligna primária mais comum e agressiva do sistema nervoso central em adultos, caracterizando-se por um comportamento biológico altamente infi...
Understanding glioblastoma : cell identity in tissue space
Understanding glioblastoma : cell identity in tissue space
<p dir="ltr"><b>Abstract</b></p><p dir="ltr">Glioblastoma is the most prevalent form of brain cancer among adults. Inherently malignant and aggressive...
Understanding glioblastoma : cell identity in tissue space
Understanding glioblastoma : cell identity in tissue space
<p dir="ltr"><b>Abstract</b></p><p dir="ltr">Glioblastoma is the most prevalent form of brain cancer among adults. Inherently malignant and aggressive...
Metabolic engineering of Kluyveromyces lactis for L-ascorbic acid (vitamin C) biosynthesis
Metabolic engineering of Kluyveromyces lactis for L-ascorbic acid (vitamin C) biosynthesis
Abstract Background L-ascorbic acid (L-AA) is naturally synthesized in plants from D-glucose by 10 steps pathway. The pathway branch to synthesiz...
Peningkatan Prestasi Belajar Materi Bilangan Berpangkat Melalui Model Discovery Learning
Peningkatan Prestasi Belajar Materi Bilangan Berpangkat Melalui Model Discovery Learning
This research is motivated by the unoptimally the mastery of the material is still not optimal exponential number among learners and implementation Discovery learning in mathematic...
Disorders of galactose, pentose, and pyruvate metabolism
Disorders of galactose, pentose, and pyruvate metabolism
Abstract Inborn errors of galactose metabolism—galactose is principally found as free lactose in dairy products. Three inborn errors of galactose metabolism are r...
BCAT1 regulates glioblastoma cell plasticity and contributes to immunosuppression
BCAT1 regulates glioblastoma cell plasticity and contributes to immunosuppression
Abstract Glioblastoma is the most common malignant brain tumor in adults. Cellular plasticity and the poorly differentiated features result in a ...

Back to Top