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The Trypanosoma brucei dihydroxyacetonephosphate acyltransferase TbDAT is dispensable for normal growth but important for synthesis of ether glycerophospholipids

Glycerophospholipids are the most abundant constituents of biological membranes in Trypanosoma brucei, which causes sleeping sickness in humans and nagana in cattle. They are essential cellular components that fulfill various important functions beyond their structural role in biological membranes s...

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Autores principales: Zufferey, Rachel, Pirani, Karim, Cheung-See-Kit, Melanie, Lee, Sungsu, Williams, Tyler A., Chen, Daniel G., Hossain, Md. Faruk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5513551/
https://www.ncbi.nlm.nih.gov/pubmed/28715456
http://dx.doi.org/10.1371/journal.pone.0181432
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author Zufferey, Rachel
Pirani, Karim
Cheung-See-Kit, Melanie
Lee, Sungsu
Williams, Tyler A.
Chen, Daniel G.
Hossain, Md. Faruk
author_facet Zufferey, Rachel
Pirani, Karim
Cheung-See-Kit, Melanie
Lee, Sungsu
Williams, Tyler A.
Chen, Daniel G.
Hossain, Md. Faruk
author_sort Zufferey, Rachel
collection PubMed
description Glycerophospholipids are the most abundant constituents of biological membranes in Trypanosoma brucei, which causes sleeping sickness in humans and nagana in cattle. They are essential cellular components that fulfill various important functions beyond their structural role in biological membranes such as in signal transduction, regulation of membrane trafficking or control of cell cycle progression. Our previous studies have established that the glycerol-3-phosphate acyltransferase TbGAT is dispensable for growth, viability, and ester lipid biosynthesis suggesting the existence of another initial acyltransferase(s). This work presents the characterization of the alternative, dihydroxyacetonephosphate acyltransferase TbDAT, which acylates primarily dihydroxyacetonephosphate and prefers palmitoyl-CoA as an acyl-CoA donor. TbDAT restores the viability of a yeast double null mutant that lacks glycerol-3-phosphate and dihydroxyacetonephosphate acyltransferase activities. A conditional null mutant of TbDAT in T. brucei procyclic form was created and characterized. TbDAT was important for survival during stationary phase and synthesis of ether lipids. In contrast, TbDAT was dispensable for normal growth. Our results show that in T. brucei procyclic forms i) TbDAT but not TbGAT is the physiologically relevant initial acyltransferase and ii) ether lipid precursors are primarily made by TbDAT.
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spelling pubmed-55135512017-08-07 The Trypanosoma brucei dihydroxyacetonephosphate acyltransferase TbDAT is dispensable for normal growth but important for synthesis of ether glycerophospholipids Zufferey, Rachel Pirani, Karim Cheung-See-Kit, Melanie Lee, Sungsu Williams, Tyler A. Chen, Daniel G. Hossain, Md. Faruk PLoS One Research Article Glycerophospholipids are the most abundant constituents of biological membranes in Trypanosoma brucei, which causes sleeping sickness in humans and nagana in cattle. They are essential cellular components that fulfill various important functions beyond their structural role in biological membranes such as in signal transduction, regulation of membrane trafficking or control of cell cycle progression. Our previous studies have established that the glycerol-3-phosphate acyltransferase TbGAT is dispensable for growth, viability, and ester lipid biosynthesis suggesting the existence of another initial acyltransferase(s). This work presents the characterization of the alternative, dihydroxyacetonephosphate acyltransferase TbDAT, which acylates primarily dihydroxyacetonephosphate and prefers palmitoyl-CoA as an acyl-CoA donor. TbDAT restores the viability of a yeast double null mutant that lacks glycerol-3-phosphate and dihydroxyacetonephosphate acyltransferase activities. A conditional null mutant of TbDAT in T. brucei procyclic form was created and characterized. TbDAT was important for survival during stationary phase and synthesis of ether lipids. In contrast, TbDAT was dispensable for normal growth. Our results show that in T. brucei procyclic forms i) TbDAT but not TbGAT is the physiologically relevant initial acyltransferase and ii) ether lipid precursors are primarily made by TbDAT. Public Library of Science 2017-07-17 /pmc/articles/PMC5513551/ /pubmed/28715456 http://dx.doi.org/10.1371/journal.pone.0181432 Text en © 2017 Zufferey et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Zufferey, Rachel
Pirani, Karim
Cheung-See-Kit, Melanie
Lee, Sungsu
Williams, Tyler A.
Chen, Daniel G.
Hossain, Md. Faruk
The Trypanosoma brucei dihydroxyacetonephosphate acyltransferase TbDAT is dispensable for normal growth but important for synthesis of ether glycerophospholipids
title The Trypanosoma brucei dihydroxyacetonephosphate acyltransferase TbDAT is dispensable for normal growth but important for synthesis of ether glycerophospholipids
title_full The Trypanosoma brucei dihydroxyacetonephosphate acyltransferase TbDAT is dispensable for normal growth but important for synthesis of ether glycerophospholipids
title_fullStr The Trypanosoma brucei dihydroxyacetonephosphate acyltransferase TbDAT is dispensable for normal growth but important for synthesis of ether glycerophospholipids
title_full_unstemmed The Trypanosoma brucei dihydroxyacetonephosphate acyltransferase TbDAT is dispensable for normal growth but important for synthesis of ether glycerophospholipids
title_short The Trypanosoma brucei dihydroxyacetonephosphate acyltransferase TbDAT is dispensable for normal growth but important for synthesis of ether glycerophospholipids
title_sort trypanosoma brucei dihydroxyacetonephosphate acyltransferase tbdat is dispensable for normal growth but important for synthesis of ether glycerophospholipids
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5513551/
https://www.ncbi.nlm.nih.gov/pubmed/28715456
http://dx.doi.org/10.1371/journal.pone.0181432
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