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Dynamics of the nucleoside diphosphate kinase protein DYNAMO2 correlates with the changes in the global GTP level during the cell cycle of Cyanidioschyzon merolae

GTP is an essential source of energy that supports a large array of cellular mechanochemical structures ranging from protein synthesis machinery to cytoskeletal apparatus for maintaining the cell cycle. However, GTP regulation during the cell cycle has been difficult to investigate because of hetero...

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Autores principales: IMOTO, Yuuta, ABE, Yuichi, OKUMOTO, Kanji, OHNUMA, Mio, KUROIWA, Haruko, KUROIWA, Tsuneyoshi, FUJIKI, Yukio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Japan Academy 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6403433/
https://www.ncbi.nlm.nih.gov/pubmed/30745504
http://dx.doi.org/10.2183/pjab.95.007
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author IMOTO, Yuuta
ABE, Yuichi
OKUMOTO, Kanji
OHNUMA, Mio
KUROIWA, Haruko
KUROIWA, Tsuneyoshi
FUJIKI, Yukio
author_facet IMOTO, Yuuta
ABE, Yuichi
OKUMOTO, Kanji
OHNUMA, Mio
KUROIWA, Haruko
KUROIWA, Tsuneyoshi
FUJIKI, Yukio
author_sort IMOTO, Yuuta
collection PubMed
description GTP is an essential source of energy that supports a large array of cellular mechanochemical structures ranging from protein synthesis machinery to cytoskeletal apparatus for maintaining the cell cycle. However, GTP regulation during the cell cycle has been difficult to investigate because of heterogenous levels of GTP in asynchronous cell cycles and genetic redundancy of the GTP-generating enzymes. Here, in the unicellular red algae Cyanidioschyzon merolae, we demonstrated that the ATP–GTP-converting enzyme DYNAMO2 is an essential regulator of global GTP levels during the cell cycle. The cell cycle of C. merolae can be highly synchronized by light/dark stimulations to examine GTP levels at desired time points. Importantly, the genome of C. merolae encodes only two isoforms of the ATP–GTP-converting enzyme, namely DYNAMO1 and DYNAMO2. DYNAMO1 regulates organelle divisions, whereas DYNAMO2 is entirely localized in the cytoplasm. DYNAMO2 protein levels increase during the S-M phases, and changes in GTP levels are correlated with these DYNAMO2 protein levels. These results indicate that DYNAMO2 is a potential regulator of global GTP levels during the cell cycle.
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spelling pubmed-64034332019-03-12 Dynamics of the nucleoside diphosphate kinase protein DYNAMO2 correlates with the changes in the global GTP level during the cell cycle of Cyanidioschyzon merolae IMOTO, Yuuta ABE, Yuichi OKUMOTO, Kanji OHNUMA, Mio KUROIWA, Haruko KUROIWA, Tsuneyoshi FUJIKI, Yukio Proc Jpn Acad Ser B Phys Biol Sci Original Article GTP is an essential source of energy that supports a large array of cellular mechanochemical structures ranging from protein synthesis machinery to cytoskeletal apparatus for maintaining the cell cycle. However, GTP regulation during the cell cycle has been difficult to investigate because of heterogenous levels of GTP in asynchronous cell cycles and genetic redundancy of the GTP-generating enzymes. Here, in the unicellular red algae Cyanidioschyzon merolae, we demonstrated that the ATP–GTP-converting enzyme DYNAMO2 is an essential regulator of global GTP levels during the cell cycle. The cell cycle of C. merolae can be highly synchronized by light/dark stimulations to examine GTP levels at desired time points. Importantly, the genome of C. merolae encodes only two isoforms of the ATP–GTP-converting enzyme, namely DYNAMO1 and DYNAMO2. DYNAMO1 regulates organelle divisions, whereas DYNAMO2 is entirely localized in the cytoplasm. DYNAMO2 protein levels increase during the S-M phases, and changes in GTP levels are correlated with these DYNAMO2 protein levels. These results indicate that DYNAMO2 is a potential regulator of global GTP levels during the cell cycle. The Japan Academy 2019-02-08 /pmc/articles/PMC6403433/ /pubmed/30745504 http://dx.doi.org/10.2183/pjab.95.007 Text en © 2019 The Japan Academy 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 work is properly cited.
spellingShingle Original Article
IMOTO, Yuuta
ABE, Yuichi
OKUMOTO, Kanji
OHNUMA, Mio
KUROIWA, Haruko
KUROIWA, Tsuneyoshi
FUJIKI, Yukio
Dynamics of the nucleoside diphosphate kinase protein DYNAMO2 correlates with the changes in the global GTP level during the cell cycle of Cyanidioschyzon merolae
title Dynamics of the nucleoside diphosphate kinase protein DYNAMO2 correlates with the changes in the global GTP level during the cell cycle of Cyanidioschyzon merolae
title_full Dynamics of the nucleoside diphosphate kinase protein DYNAMO2 correlates with the changes in the global GTP level during the cell cycle of Cyanidioschyzon merolae
title_fullStr Dynamics of the nucleoside diphosphate kinase protein DYNAMO2 correlates with the changes in the global GTP level during the cell cycle of Cyanidioschyzon merolae
title_full_unstemmed Dynamics of the nucleoside diphosphate kinase protein DYNAMO2 correlates with the changes in the global GTP level during the cell cycle of Cyanidioschyzon merolae
title_short Dynamics of the nucleoside diphosphate kinase protein DYNAMO2 correlates with the changes in the global GTP level during the cell cycle of Cyanidioschyzon merolae
title_sort dynamics of the nucleoside diphosphate kinase protein dynamo2 correlates with the changes in the global gtp level during the cell cycle of cyanidioschyzon merolae
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6403433/
https://www.ncbi.nlm.nih.gov/pubmed/30745504
http://dx.doi.org/10.2183/pjab.95.007
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