Cargando…

Functional Characterization of the Vitamin K(2) Biosynthetic Enzyme UBIAD1

UbiA prenyltransferase domain-containing protein 1 (UBIAD1) plays a significant role in vitamin K(2) (MK-4) synthesis. We investigated the enzymological properties of UBIAD1 using microsomal fractions from Sf9 cells expressing UBIAD1 by analysing MK-4 biosynthetic activity. With regard to UBIAD1 enz...

Descripción completa

Detalles Bibliográficos
Autores principales: Hirota, Yoshihisa, Nakagawa, Kimie, Sawada, Natsumi, Okuda, Naoko, Suhara, Yoshitomo, Uchino, Yuri, Kimoto, Takashi, Funahashi, Nobuaki, Kamao, Maya, Tsugawa, Naoko, Okano, Toshio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4398444/
https://www.ncbi.nlm.nih.gov/pubmed/25874989
http://dx.doi.org/10.1371/journal.pone.0125737
_version_ 1782366823941931008
author Hirota, Yoshihisa
Nakagawa, Kimie
Sawada, Natsumi
Okuda, Naoko
Suhara, Yoshitomo
Uchino, Yuri
Kimoto, Takashi
Funahashi, Nobuaki
Kamao, Maya
Tsugawa, Naoko
Okano, Toshio
author_facet Hirota, Yoshihisa
Nakagawa, Kimie
Sawada, Natsumi
Okuda, Naoko
Suhara, Yoshitomo
Uchino, Yuri
Kimoto, Takashi
Funahashi, Nobuaki
Kamao, Maya
Tsugawa, Naoko
Okano, Toshio
author_sort Hirota, Yoshihisa
collection PubMed
description UbiA prenyltransferase domain-containing protein 1 (UBIAD1) plays a significant role in vitamin K(2) (MK-4) synthesis. We investigated the enzymological properties of UBIAD1 using microsomal fractions from Sf9 cells expressing UBIAD1 by analysing MK-4 biosynthetic activity. With regard to UBIAD1 enzyme reaction conditions, highest MK-4 synthetic activity was demonstrated under basic conditions at a pH between 8.5 and 9.0, with a DTT ≥0.1 mM. In addition, we found that geranyl pyrophosphate and farnesyl pyrophosphate were also recognized as a side-chain source and served as a substrate for prenylation. Furthermore, lipophilic statins were found to directly inhibit the enzymatic activity of UBIAD1. We analysed the aminoacid sequences homologies across the menA and UbiA families to identify conserved structural features of UBIAD1 proteins and focused on four highly conserved domains. We prepared protein mutants deficient in the four conserved domains to evaluate enzyme activity. Because no enzyme activity was detected in the mutants deficient in the UBIAD1 conserved domains, these four domains were considered to play an essential role in enzymatic activity. We also measured enzyme activities using point mutants of the highly conserved aminoacids in these domains to elucidate their respective functions. We found that the conserved domain I is a substrate recognition site that undergoes a structural change after substrate binding. The conserved domain II is a redox domain site containing a CxxC motif. The conserved domain III is a hinge region important as a catalytic site for the UBIAD1 enzyme. The conserved domain IV is a binding site for Mg(2+)/isoprenyl side-chain. In this study, we provide a molecular mapping of the enzymological properties of UBIAD1.
format Online
Article
Text
id pubmed-4398444
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-43984442015-04-21 Functional Characterization of the Vitamin K(2) Biosynthetic Enzyme UBIAD1 Hirota, Yoshihisa Nakagawa, Kimie Sawada, Natsumi Okuda, Naoko Suhara, Yoshitomo Uchino, Yuri Kimoto, Takashi Funahashi, Nobuaki Kamao, Maya Tsugawa, Naoko Okano, Toshio PLoS One Research Article UbiA prenyltransferase domain-containing protein 1 (UBIAD1) plays a significant role in vitamin K(2) (MK-4) synthesis. We investigated the enzymological properties of UBIAD1 using microsomal fractions from Sf9 cells expressing UBIAD1 by analysing MK-4 biosynthetic activity. With regard to UBIAD1 enzyme reaction conditions, highest MK-4 synthetic activity was demonstrated under basic conditions at a pH between 8.5 and 9.0, with a DTT ≥0.1 mM. In addition, we found that geranyl pyrophosphate and farnesyl pyrophosphate were also recognized as a side-chain source and served as a substrate for prenylation. Furthermore, lipophilic statins were found to directly inhibit the enzymatic activity of UBIAD1. We analysed the aminoacid sequences homologies across the menA and UbiA families to identify conserved structural features of UBIAD1 proteins and focused on four highly conserved domains. We prepared protein mutants deficient in the four conserved domains to evaluate enzyme activity. Because no enzyme activity was detected in the mutants deficient in the UBIAD1 conserved domains, these four domains were considered to play an essential role in enzymatic activity. We also measured enzyme activities using point mutants of the highly conserved aminoacids in these domains to elucidate their respective functions. We found that the conserved domain I is a substrate recognition site that undergoes a structural change after substrate binding. The conserved domain II is a redox domain site containing a CxxC motif. The conserved domain III is a hinge region important as a catalytic site for the UBIAD1 enzyme. The conserved domain IV is a binding site for Mg(2+)/isoprenyl side-chain. In this study, we provide a molecular mapping of the enzymological properties of UBIAD1. Public Library of Science 2015-04-15 /pmc/articles/PMC4398444/ /pubmed/25874989 http://dx.doi.org/10.1371/journal.pone.0125737 Text en © 2015 Hirota 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hirota, Yoshihisa
Nakagawa, Kimie
Sawada, Natsumi
Okuda, Naoko
Suhara, Yoshitomo
Uchino, Yuri
Kimoto, Takashi
Funahashi, Nobuaki
Kamao, Maya
Tsugawa, Naoko
Okano, Toshio
Functional Characterization of the Vitamin K(2) Biosynthetic Enzyme UBIAD1
title Functional Characterization of the Vitamin K(2) Biosynthetic Enzyme UBIAD1
title_full Functional Characterization of the Vitamin K(2) Biosynthetic Enzyme UBIAD1
title_fullStr Functional Characterization of the Vitamin K(2) Biosynthetic Enzyme UBIAD1
title_full_unstemmed Functional Characterization of the Vitamin K(2) Biosynthetic Enzyme UBIAD1
title_short Functional Characterization of the Vitamin K(2) Biosynthetic Enzyme UBIAD1
title_sort functional characterization of the vitamin k(2) biosynthetic enzyme ubiad1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4398444/
https://www.ncbi.nlm.nih.gov/pubmed/25874989
http://dx.doi.org/10.1371/journal.pone.0125737
work_keys_str_mv AT hirotayoshihisa functionalcharacterizationofthevitamink2biosyntheticenzymeubiad1
AT nakagawakimie functionalcharacterizationofthevitamink2biosyntheticenzymeubiad1
AT sawadanatsumi functionalcharacterizationofthevitamink2biosyntheticenzymeubiad1
AT okudanaoko functionalcharacterizationofthevitamink2biosyntheticenzymeubiad1
AT suharayoshitomo functionalcharacterizationofthevitamink2biosyntheticenzymeubiad1
AT uchinoyuri functionalcharacterizationofthevitamink2biosyntheticenzymeubiad1
AT kimototakashi functionalcharacterizationofthevitamink2biosyntheticenzymeubiad1
AT funahashinobuaki functionalcharacterizationofthevitamink2biosyntheticenzymeubiad1
AT kamaomaya functionalcharacterizationofthevitamink2biosyntheticenzymeubiad1
AT tsugawanaoko functionalcharacterizationofthevitamink2biosyntheticenzymeubiad1
AT okanotoshio functionalcharacterizationofthevitamink2biosyntheticenzymeubiad1