Cargando…

Defects in Galactose Metabolism and Glycoconjugate Biosynthesis in a UDP-Glucose Pyrophosphorylase-Deficient Cell Line Are Reversed by Adding Galactose to the Growth Medium

UDP-glucose (UDP-Glc) is synthesized by UGP2-encoded UDP-Glc pyrophosphorylase (UGP) and is required for glycoconjugate biosynthesis and galactose metabolism because it is a uridyl donor for galactose-1-P (Gal1P) uridyltransferase. Chinese hamster lung fibroblasts harboring a hypomrphic UGP(G116D) v...

Descripción completa

Detalles Bibliográficos
Autores principales: Durrant, Christelle, Fuehring, Jana I., Willemetz, Alexandra, Chrétien, Dominique, Sala, Giusy, Ghidoni, Riccardo, Katz, Abram, Rötig, Agnès, Thelestam, Monica, Ermonval, Myriam, Moore, Stuart E. H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7139386/
https://www.ncbi.nlm.nih.gov/pubmed/32188137
http://dx.doi.org/10.3390/ijms21062028
_version_ 1783518754038087680
author Durrant, Christelle
Fuehring, Jana I.
Willemetz, Alexandra
Chrétien, Dominique
Sala, Giusy
Ghidoni, Riccardo
Katz, Abram
Rötig, Agnès
Thelestam, Monica
Ermonval, Myriam
Moore, Stuart E. H.
author_facet Durrant, Christelle
Fuehring, Jana I.
Willemetz, Alexandra
Chrétien, Dominique
Sala, Giusy
Ghidoni, Riccardo
Katz, Abram
Rötig, Agnès
Thelestam, Monica
Ermonval, Myriam
Moore, Stuart E. H.
author_sort Durrant, Christelle
collection PubMed
description UDP-glucose (UDP-Glc) is synthesized by UGP2-encoded UDP-Glc pyrophosphorylase (UGP) and is required for glycoconjugate biosynthesis and galactose metabolism because it is a uridyl donor for galactose-1-P (Gal1P) uridyltransferase. Chinese hamster lung fibroblasts harboring a hypomrphic UGP(G116D) variant display reduced UDP-Glc levels and cannot grow if galactose is the sole carbon source. Here, these cells were cultivated with glucose in either the absence or presence of galactose in order to investigate glycoconjugate biosynthesis and galactose metabolism. The UGP-deficient cells display < 5% control levels of UDP-Glc/UDP-Gal and > 100-fold reduction of [6-(3)H]galactose incorporation into UDP-[6-(3)H]galactose, as well as multiple deficits in glycoconjugate biosynthesis. Cultivation of these cells in the presence of galactose leads to partial restoration of UDP-Glc levels, galactose metabolism and glycoconjugate biosynthesis. The V(max) for recombinant human UGP(G116D) with Glc1P is 2000-fold less than that of the wild-type protein, and UGP(G116D) displayed a mildly elevated K(m) for Glc1P, but no activity of the mutant enzyme towards Gal1P was detectable. To conclude, although the mechanism behind UDP-Glc/Gal production in the UGP-deficient cells remains to be determined, the capacity of this cell line to change its glycosylation status as a function of extracellular galactose makes it a useful, reversible model with which to study different aspects of galactose metabolism and glycoconjugate biosynthesis.
format Online
Article
Text
id pubmed-7139386
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-71393862020-04-10 Defects in Galactose Metabolism and Glycoconjugate Biosynthesis in a UDP-Glucose Pyrophosphorylase-Deficient Cell Line Are Reversed by Adding Galactose to the Growth Medium Durrant, Christelle Fuehring, Jana I. Willemetz, Alexandra Chrétien, Dominique Sala, Giusy Ghidoni, Riccardo Katz, Abram Rötig, Agnès Thelestam, Monica Ermonval, Myriam Moore, Stuart E. H. Int J Mol Sci Article UDP-glucose (UDP-Glc) is synthesized by UGP2-encoded UDP-Glc pyrophosphorylase (UGP) and is required for glycoconjugate biosynthesis and galactose metabolism because it is a uridyl donor for galactose-1-P (Gal1P) uridyltransferase. Chinese hamster lung fibroblasts harboring a hypomrphic UGP(G116D) variant display reduced UDP-Glc levels and cannot grow if galactose is the sole carbon source. Here, these cells were cultivated with glucose in either the absence or presence of galactose in order to investigate glycoconjugate biosynthesis and galactose metabolism. The UGP-deficient cells display < 5% control levels of UDP-Glc/UDP-Gal and > 100-fold reduction of [6-(3)H]galactose incorporation into UDP-[6-(3)H]galactose, as well as multiple deficits in glycoconjugate biosynthesis. Cultivation of these cells in the presence of galactose leads to partial restoration of UDP-Glc levels, galactose metabolism and glycoconjugate biosynthesis. The V(max) for recombinant human UGP(G116D) with Glc1P is 2000-fold less than that of the wild-type protein, and UGP(G116D) displayed a mildly elevated K(m) for Glc1P, but no activity of the mutant enzyme towards Gal1P was detectable. To conclude, although the mechanism behind UDP-Glc/Gal production in the UGP-deficient cells remains to be determined, the capacity of this cell line to change its glycosylation status as a function of extracellular galactose makes it a useful, reversible model with which to study different aspects of galactose metabolism and glycoconjugate biosynthesis. MDPI 2020-03-16 /pmc/articles/PMC7139386/ /pubmed/32188137 http://dx.doi.org/10.3390/ijms21062028 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Durrant, Christelle
Fuehring, Jana I.
Willemetz, Alexandra
Chrétien, Dominique
Sala, Giusy
Ghidoni, Riccardo
Katz, Abram
Rötig, Agnès
Thelestam, Monica
Ermonval, Myriam
Moore, Stuart E. H.
Defects in Galactose Metabolism and Glycoconjugate Biosynthesis in a UDP-Glucose Pyrophosphorylase-Deficient Cell Line Are Reversed by Adding Galactose to the Growth Medium
title Defects in Galactose Metabolism and Glycoconjugate Biosynthesis in a UDP-Glucose Pyrophosphorylase-Deficient Cell Line Are Reversed by Adding Galactose to the Growth Medium
title_full Defects in Galactose Metabolism and Glycoconjugate Biosynthesis in a UDP-Glucose Pyrophosphorylase-Deficient Cell Line Are Reversed by Adding Galactose to the Growth Medium
title_fullStr Defects in Galactose Metabolism and Glycoconjugate Biosynthesis in a UDP-Glucose Pyrophosphorylase-Deficient Cell Line Are Reversed by Adding Galactose to the Growth Medium
title_full_unstemmed Defects in Galactose Metabolism and Glycoconjugate Biosynthesis in a UDP-Glucose Pyrophosphorylase-Deficient Cell Line Are Reversed by Adding Galactose to the Growth Medium
title_short Defects in Galactose Metabolism and Glycoconjugate Biosynthesis in a UDP-Glucose Pyrophosphorylase-Deficient Cell Line Are Reversed by Adding Galactose to the Growth Medium
title_sort defects in galactose metabolism and glycoconjugate biosynthesis in a udp-glucose pyrophosphorylase-deficient cell line are reversed by adding galactose to the growth medium
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7139386/
https://www.ncbi.nlm.nih.gov/pubmed/32188137
http://dx.doi.org/10.3390/ijms21062028
work_keys_str_mv AT durrantchristelle defectsingalactosemetabolismandglycoconjugatebiosynthesisinaudpglucosepyrophosphorylasedeficientcelllinearereversedbyaddinggalactosetothegrowthmedium
AT fuehringjanai defectsingalactosemetabolismandglycoconjugatebiosynthesisinaudpglucosepyrophosphorylasedeficientcelllinearereversedbyaddinggalactosetothegrowthmedium
AT willemetzalexandra defectsingalactosemetabolismandglycoconjugatebiosynthesisinaudpglucosepyrophosphorylasedeficientcelllinearereversedbyaddinggalactosetothegrowthmedium
AT chretiendominique defectsingalactosemetabolismandglycoconjugatebiosynthesisinaudpglucosepyrophosphorylasedeficientcelllinearereversedbyaddinggalactosetothegrowthmedium
AT salagiusy defectsingalactosemetabolismandglycoconjugatebiosynthesisinaudpglucosepyrophosphorylasedeficientcelllinearereversedbyaddinggalactosetothegrowthmedium
AT ghidoniriccardo defectsingalactosemetabolismandglycoconjugatebiosynthesisinaudpglucosepyrophosphorylasedeficientcelllinearereversedbyaddinggalactosetothegrowthmedium
AT katzabram defectsingalactosemetabolismandglycoconjugatebiosynthesisinaudpglucosepyrophosphorylasedeficientcelllinearereversedbyaddinggalactosetothegrowthmedium
AT rotigagnes defectsingalactosemetabolismandglycoconjugatebiosynthesisinaudpglucosepyrophosphorylasedeficientcelllinearereversedbyaddinggalactosetothegrowthmedium
AT thelestammonica defectsingalactosemetabolismandglycoconjugatebiosynthesisinaudpglucosepyrophosphorylasedeficientcelllinearereversedbyaddinggalactosetothegrowthmedium
AT ermonvalmyriam defectsingalactosemetabolismandglycoconjugatebiosynthesisinaudpglucosepyrophosphorylasedeficientcelllinearereversedbyaddinggalactosetothegrowthmedium
AT moorestuarteh defectsingalactosemetabolismandglycoconjugatebiosynthesisinaudpglucosepyrophosphorylasedeficientcelllinearereversedbyaddinggalactosetothegrowthmedium