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PLD2 regulates microtubule stability and spindle migration in mouse oocytes during meiotic division

Phospholipase D2 (PLD2) is involved in cytoskeletal reorganization, cell migration, cell cycle progression, transcriptional control and vesicle trafficking. There is no evidence about PLD2 function in oocytes during meiosis. Herein, we analyzed PLD2 expression and its relationship with spindle forma...

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Autores principales: Liu, Xiaoyu, Liu, Xiaoyun, Chen, Dandan, Jiang, Xiuying, Ma, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: PeerJ Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5436581/
https://www.ncbi.nlm.nih.gov/pubmed/28533957
http://dx.doi.org/10.7717/peerj.3295
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author Liu, Xiaoyu
Liu, Xiaoyun
Chen, Dandan
Jiang, Xiuying
Ma, Wei
author_facet Liu, Xiaoyu
Liu, Xiaoyun
Chen, Dandan
Jiang, Xiuying
Ma, Wei
author_sort Liu, Xiaoyu
collection PubMed
description Phospholipase D2 (PLD2) is involved in cytoskeletal reorganization, cell migration, cell cycle progression, transcriptional control and vesicle trafficking. There is no evidence about PLD2 function in oocytes during meiosis. Herein, we analyzed PLD2 expression and its relationship with spindle formation and positioning in mouse oocyte meiosis. High protein level of PLD2 was revealed in oocytes by Western blot, which remained consistently stable from prophase I with intact germinal vesicle (GV) up to metaphase II (MII) stage. Immunofluorescence showed that PLD2 appeared and gathered around the condensed chromosomesafter germinal vesicle breakdown (GVBD), and co-localized with spindle from pro-metaphase I (pro-MI) to metaphase I (MI) and at MII stage. During anaphase I (Ana I) to telophase I (Tel I) transition, PLD2 was concentrated in the spindle polar area but absent from the midbody. In oocytes incubated with NFOT, an allosteric and catalytic inhibitor to PLD2, the spindle was enlarged and center-positioned, microtubules were resistant to cold-induced depolymerization and, additionally, the meiotic progression was arrested at MI stage. However, spindle migration could not be totally prevented by PLD2 catalytic specific inhibitors, FIPI and 1-butanol, implying at least partially, that PLD2 effect on spindle migration needs non-catalytic domain participation. NFOT-induced defects also resulted in actin-related molecules’ distribution alteration, such as RhoA, phosphatidylinosital 4, 5- biphosphate (PIP2), phosphorylated Colifin and, consequently, unordered F-actin dynamics. Taken together, these data indicate PLD2 is required for the regulation of microtubule dynamics and spindle migration toward the cortex in mammalian oocytes during meiotic progression.
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spelling pubmed-54365812017-05-22 PLD2 regulates microtubule stability and spindle migration in mouse oocytes during meiotic division Liu, Xiaoyu Liu, Xiaoyun Chen, Dandan Jiang, Xiuying Ma, Wei PeerJ Cell Biology Phospholipase D2 (PLD2) is involved in cytoskeletal reorganization, cell migration, cell cycle progression, transcriptional control and vesicle trafficking. There is no evidence about PLD2 function in oocytes during meiosis. Herein, we analyzed PLD2 expression and its relationship with spindle formation and positioning in mouse oocyte meiosis. High protein level of PLD2 was revealed in oocytes by Western blot, which remained consistently stable from prophase I with intact germinal vesicle (GV) up to metaphase II (MII) stage. Immunofluorescence showed that PLD2 appeared and gathered around the condensed chromosomesafter germinal vesicle breakdown (GVBD), and co-localized with spindle from pro-metaphase I (pro-MI) to metaphase I (MI) and at MII stage. During anaphase I (Ana I) to telophase I (Tel I) transition, PLD2 was concentrated in the spindle polar area but absent from the midbody. In oocytes incubated with NFOT, an allosteric and catalytic inhibitor to PLD2, the spindle was enlarged and center-positioned, microtubules were resistant to cold-induced depolymerization and, additionally, the meiotic progression was arrested at MI stage. However, spindle migration could not be totally prevented by PLD2 catalytic specific inhibitors, FIPI and 1-butanol, implying at least partially, that PLD2 effect on spindle migration needs non-catalytic domain participation. NFOT-induced defects also resulted in actin-related molecules’ distribution alteration, such as RhoA, phosphatidylinosital 4, 5- biphosphate (PIP2), phosphorylated Colifin and, consequently, unordered F-actin dynamics. Taken together, these data indicate PLD2 is required for the regulation of microtubule dynamics and spindle migration toward the cortex in mammalian oocytes during meiotic progression. PeerJ Inc. 2017-05-16 /pmc/articles/PMC5436581/ /pubmed/28533957 http://dx.doi.org/10.7717/peerj.3295 Text en ©2017 Liu 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, reproduction and adaptation in any medium and for any purpose provided that it is properly attributed. For attribution, the original author(s), title, publication source (PeerJ) and either DOI or URL of the article must be cited.
spellingShingle Cell Biology
Liu, Xiaoyu
Liu, Xiaoyun
Chen, Dandan
Jiang, Xiuying
Ma, Wei
PLD2 regulates microtubule stability and spindle migration in mouse oocytes during meiotic division
title PLD2 regulates microtubule stability and spindle migration in mouse oocytes during meiotic division
title_full PLD2 regulates microtubule stability and spindle migration in mouse oocytes during meiotic division
title_fullStr PLD2 regulates microtubule stability and spindle migration in mouse oocytes during meiotic division
title_full_unstemmed PLD2 regulates microtubule stability and spindle migration in mouse oocytes during meiotic division
title_short PLD2 regulates microtubule stability and spindle migration in mouse oocytes during meiotic division
title_sort pld2 regulates microtubule stability and spindle migration in mouse oocytes during meiotic division
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5436581/
https://www.ncbi.nlm.nih.gov/pubmed/28533957
http://dx.doi.org/10.7717/peerj.3295
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