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Alternative splicing of COQ-2 determines the choice between ubiquinone and rhodoquinone biosynthesis in helminths
by
Shepherd, Jennifer N
, Wang, Jianbin
, Schertzberg, Michael R
, Reinl, Samantha R
, Tan, June H
, Lautens, Margot
, Davis, Richard E
, Fraser, Andrew
, Romanelli-Cedrez, Laura Laura
, Salinas, Gustavo
in
Alternative splicing
/ Anaerobic conditions
/ Anaerobic environments
/ Benzoquinone
/ Cyanides
/ Electron transport chain
/ Isoforms
/ Molecular Biology
/ Polyprenyltransferase
/ Ubiquinone
2020
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Alternative splicing of COQ-2 determines the choice between ubiquinone and rhodoquinone biosynthesis in helminths
by
Shepherd, Jennifer N
, Wang, Jianbin
, Schertzberg, Michael R
, Reinl, Samantha R
, Tan, June H
, Lautens, Margot
, Davis, Richard E
, Fraser, Andrew
, Romanelli-Cedrez, Laura Laura
, Salinas, Gustavo
in
Alternative splicing
/ Anaerobic conditions
/ Anaerobic environments
/ Benzoquinone
/ Cyanides
/ Electron transport chain
/ Isoforms
/ Molecular Biology
/ Polyprenyltransferase
/ Ubiquinone
2020
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Alternative splicing of COQ-2 determines the choice between ubiquinone and rhodoquinone biosynthesis in helminths
by
Shepherd, Jennifer N
, Wang, Jianbin
, Schertzberg, Michael R
, Reinl, Samantha R
, Tan, June H
, Lautens, Margot
, Davis, Richard E
, Fraser, Andrew
, Romanelli-Cedrez, Laura Laura
, Salinas, Gustavo
in
Alternative splicing
/ Anaerobic conditions
/ Anaerobic environments
/ Benzoquinone
/ Cyanides
/ Electron transport chain
/ Isoforms
/ Molecular Biology
/ Polyprenyltransferase
/ Ubiquinone
2020
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Alternative splicing of COQ-2 determines the choice between ubiquinone and rhodoquinone biosynthesis in helminths
Paper
Alternative splicing of COQ-2 determines the choice between ubiquinone and rhodoquinone biosynthesis in helminths
2020
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Overview
Parasitic helminths use two benzoquinones as electron carriers in the electron transport chain. In aerobic environments they use ubiquinone (UQ) but in the anaerobic environment of the host, they require rhodoquinone (RQ) and greatly increase RQ levels. The switch to RQ synthesis is driven by substrate selection by the polyprenyltransferase COQ-2 but the mechanisms underlying this substrate choice are unknown. We found that helminths make two coq-2 isoforms, coq-2a and coq-2e, by alternative splicing. COQ-2a is homologous to COQ2 from other eukaryotes but the COQ-2e-specific exon is only found in species that make RQ and its inclusion changes the enzyme core. We show COQ-2e is required for RQ synthesis and for survival in cyanide in C. elegans. Crucially, we see a switch from COQ-2a to COQ-2e as parasites transition into anaerobic environments. We conclude that under anaerobic conditions helminths switch from UQ to RQ synthesis via alternative splicing of coq-2.
Publisher
Cold Spring Harbor Laboratory Press,Cold Spring Harbor Laboratory
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