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Enhanced ER-associated degradation of HMG CoA reductase causes embryonic lethality associated with Ubiad1 deficiency

UbiA prenyltransferase domain-containing protein-1 (UBIAD1) synthesizes the vitamin K subtype menaquinone-4 (MK-4). Previous studies in cultured cells (Schumacher et al., 2015) revealed that UBIAD1 also inhibits endoplasmic reticulum (ER)-associated degradation (ERAD) of ubiquitinated HMG CoA reduct...

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Autores principales: Jo, Youngah, Kim, Steven S, Garland, Kristina, Fuentes, Iris, DiCarlo, Lisa M, Ellis, Jessie L, Fu, Xueyan, Booth, Sarah L, Evers, Bret M, DeBose-Boyd, Russell A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7069719/
https://www.ncbi.nlm.nih.gov/pubmed/32118581
http://dx.doi.org/10.7554/eLife.54841
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author Jo, Youngah
Kim, Steven S
Garland, Kristina
Fuentes, Iris
DiCarlo, Lisa M
Ellis, Jessie L
Fu, Xueyan
Booth, Sarah L
Evers, Bret M
DeBose-Boyd, Russell A
author_facet Jo, Youngah
Kim, Steven S
Garland, Kristina
Fuentes, Iris
DiCarlo, Lisa M
Ellis, Jessie L
Fu, Xueyan
Booth, Sarah L
Evers, Bret M
DeBose-Boyd, Russell A
author_sort Jo, Youngah
collection PubMed
description UbiA prenyltransferase domain-containing protein-1 (UBIAD1) synthesizes the vitamin K subtype menaquinone-4 (MK-4). Previous studies in cultured cells (Schumacher et al., 2015) revealed that UBIAD1 also inhibits endoplasmic reticulum (ER)-associated degradation (ERAD) of ubiquitinated HMG CoA reductase (HMGCR), the rate-limiting enzyme of the mevalonate pathway that produces cholesterol and essential nonsterol isoprenoids. Gene knockout studies were previously attempted to explore the function of UBIAD1 in mice; however, homozygous germ-line elimination of the Ubiad1 gene caused embryonic lethality. We now report that homozygous deletion of Ubiad1 is produced in knockin mice expressing ubiquitination/ERAD-resistant HMGCR. Thus, embryonic lethality of Ubiad1 deficiency results from depletion of mevalonate-derived products owing to enhanced ERAD of HMGCR rather than from reduced synthesis of MK-4. These findings provide genetic evidence for the significance of UBIAD1 in regulation of cholesterol synthesis and offer the opportunity in future studies for the discovery of new physiological roles of MK-4.
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spelling pubmed-70697192020-03-18 Enhanced ER-associated degradation of HMG CoA reductase causes embryonic lethality associated with Ubiad1 deficiency Jo, Youngah Kim, Steven S Garland, Kristina Fuentes, Iris DiCarlo, Lisa M Ellis, Jessie L Fu, Xueyan Booth, Sarah L Evers, Bret M DeBose-Boyd, Russell A eLife Developmental Biology UbiA prenyltransferase domain-containing protein-1 (UBIAD1) synthesizes the vitamin K subtype menaquinone-4 (MK-4). Previous studies in cultured cells (Schumacher et al., 2015) revealed that UBIAD1 also inhibits endoplasmic reticulum (ER)-associated degradation (ERAD) of ubiquitinated HMG CoA reductase (HMGCR), the rate-limiting enzyme of the mevalonate pathway that produces cholesterol and essential nonsterol isoprenoids. Gene knockout studies were previously attempted to explore the function of UBIAD1 in mice; however, homozygous germ-line elimination of the Ubiad1 gene caused embryonic lethality. We now report that homozygous deletion of Ubiad1 is produced in knockin mice expressing ubiquitination/ERAD-resistant HMGCR. Thus, embryonic lethality of Ubiad1 deficiency results from depletion of mevalonate-derived products owing to enhanced ERAD of HMGCR rather than from reduced synthesis of MK-4. These findings provide genetic evidence for the significance of UBIAD1 in regulation of cholesterol synthesis and offer the opportunity in future studies for the discovery of new physiological roles of MK-4. eLife Sciences Publications, Ltd 2020-03-02 /pmc/articles/PMC7069719/ /pubmed/32118581 http://dx.doi.org/10.7554/eLife.54841 Text en © 2020, Jo et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Developmental Biology
Jo, Youngah
Kim, Steven S
Garland, Kristina
Fuentes, Iris
DiCarlo, Lisa M
Ellis, Jessie L
Fu, Xueyan
Booth, Sarah L
Evers, Bret M
DeBose-Boyd, Russell A
Enhanced ER-associated degradation of HMG CoA reductase causes embryonic lethality associated with Ubiad1 deficiency
title Enhanced ER-associated degradation of HMG CoA reductase causes embryonic lethality associated with Ubiad1 deficiency
title_full Enhanced ER-associated degradation of HMG CoA reductase causes embryonic lethality associated with Ubiad1 deficiency
title_fullStr Enhanced ER-associated degradation of HMG CoA reductase causes embryonic lethality associated with Ubiad1 deficiency
title_full_unstemmed Enhanced ER-associated degradation of HMG CoA reductase causes embryonic lethality associated with Ubiad1 deficiency
title_short Enhanced ER-associated degradation of HMG CoA reductase causes embryonic lethality associated with Ubiad1 deficiency
title_sort enhanced er-associated degradation of hmg coa reductase causes embryonic lethality associated with ubiad1 deficiency
topic Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7069719/
https://www.ncbi.nlm.nih.gov/pubmed/32118581
http://dx.doi.org/10.7554/eLife.54841
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