Literature DB >> 25058602

Fatty acid synthesis and oxidation in cumulus cells support oocyte maturation in bovine.

Laura Sanchez-Lazo1, Daphné Brisard, Sébastien Elis, Virginie Maillard, Rustem Uzbekov, Valérie Labas, Alice Desmarchais, Pascal Papillier, Philippe Monget, Svetlana Uzbekova.   

Abstract

Oocyte meiotic maturation requires energy from various substrates including glucose, amino acids, and lipids. Mitochondrial fatty acid (FA) β-oxidation (FAO) in the oocyte is required for meiotic maturation, which is accompanied by differential expression of numerous genes involved in FAs metabolism in surrounding cumulus cells (CCs) in vivo. The objective was to elucidate components involved in FAs metabolism in CCs during oocyte maturation. Twenty-seven genes related to lipogenesis, lipolysis, FA transport, and FAO were chosen from comparative transcriptome analysis of bovine CCs before and after maturation in vivo. Using real-time PCR, 22 were significantly upregulated at different times of in vitro maturation (IVM) in relation to oocyte meiosis progression from germinal vesicle breakdown to metaphase-II. Proteins FA synthase, acetyl-coenzyme-A carboxylase, carnitine palmitoyltransferase, perilipin 2, and FA binding protein 3 were detected by Western blot and immunolocalized to CCs and oocyte cytoplasm, with FA binding protein 3 concentrated around oocyte chromatin. By mass spectrometry, CCs lipid profiling was shown to be different before and after IVM. FAO inhibitors etomoxir and mildronate dose-dependently decreased the oocyte maturation rate in vitro. In terms of viability, cumulus enclosed oocytes were more sensitive to etomoxir than denuded oocytes. In CCs, etomoxir (150 μM) led to downregulation of lipogenesis genes and upregulated lipolysis and FAO genes. Moreover, the number of lipid droplets decreased, whereas several lipid species were more abundant compared with nontreated CCs after IVM. In conclusion, FAs metabolism in CCs is important to maintain metabolic homeostasis and may influence meiosis progression and survival of enclosed oocytes.

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Year:  2014        PMID: 25058602      PMCID: PMC5414796          DOI: 10.1210/me.2014-1049

Source DB:  PubMed          Journal:  Mol Endocrinol        ISSN: 0888-8809


  67 in total

Review 1.  Effects of in-vivo and in-vitro environments on the metabolism of the cumulus-oocyte complex and its influence on oocyte developmental capacity.

Authors:  M L Sutton; R B Gilchrist; J G Thompson
Journal:  Hum Reprod Update       Date:  2003 Jan-Feb       Impact factor: 15.610

2.  Chemical composition of lipids present in cat and dog oocyte by matrix-assisted desorption ionization mass spectrometry (MALDI- MS).

Authors:  M Apparicio; C R Ferreira; A Tata; V G Santos; A E Alves; G Q Mostachio; E A Pires-Butler; T F Motheo; L C Padilha; E J Pilau; F C Gozzo; M N Eberlin; E G Lo Turco; G C Luvoni; W R R Vicente
Journal:  Reprod Domest Anim       Date:  2012-12       Impact factor: 2.005

Review 3.  Role of fatty acids in energy provision during oocyte maturation and early embryo development.

Authors:  R G Sturmey; A Reis; H J Leese; T G McEvoy
Journal:  Reprod Domest Anim       Date:  2009-09       Impact factor: 2.005

4.  Inhibition of fatty acid oxidation by etomoxir impairs NADPH production and increases reactive oxygen species resulting in ATP depletion and cell death in human glioblastoma cells.

Authors:  Lisa S Pike; Amy L Smift; Nicole J Croteau; David A Ferrick; Min Wu
Journal:  Biochim Biophys Acta       Date:  2011-06

Review 5.  The pivotal role of glucose metabolism in determining oocyte developmental competence.

Authors:  Melanie L Sutton-McDowall; Robert B Gilchrist; Jeremy G Thompson
Journal:  Reproduction       Date:  2010-01-20       Impact factor: 3.906

Review 6.  Promoting lipid utilization with l-carnitine to improve oocyte quality.

Authors:  Kylie R Dunning; Rebecca L Robker
Journal:  Anim Reprod Sci       Date:  2012-08-11       Impact factor: 2.145

7.  Expression of putative fatty acid transporter genes are regulated by peroxisome proliferator-activated receptor alpha and gamma activators in a tissue- and inducer-specific manner.

Authors:  K Motojima; P Passilly; J M Peters; F J Gonzalez; N Latruffe
Journal:  J Biol Chem       Date:  1998-07-03       Impact factor: 5.157

Review 8.  Carnitine palmitoyltransferases 1 and 2: biochemical, molecular and medical aspects.

Authors:  Jean-Paul Bonnefont; Fatima Djouadi; Carina Prip-Buus; Stephanie Gobin; Arnold Munnich; Jean Bastin
Journal:  Mol Aspects Med       Date:  2004 Oct-Dec

9.  Lipid content, active mitochondria and brilliant cresyl blue staining in bovine oocytes.

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10.  Tribbles expression in cumulus cells is related to oocyte maturation and fatty acid metabolism.

Authors:  Daphné Brisard; Franck Chesnel; Sébastien Elis; Alice Desmarchais; Laura Sánchez-Lazo; Manon Chasles; Virginie Maillard; Svetlana Uzbekova
Journal:  J Ovarian Res       Date:  2014-04-26       Impact factor: 4.234

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  34 in total

1.  Respirometric reserve capacity of cumulus cell mitochondria correlates with oocyte maturity.

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2.  Transcriptome meta-analysis of three follicular compartments and its correlation with ovarian follicle maturity and oocyte developmental competence in cows.

Authors:  Daulat Raheem Khan; David A Landry; Éric Fournier; Christian Vigneault; Patrick Blondin; Marc-André Sirard
Journal:  Physiol Genomics       Date:  2016-07-08       Impact factor: 3.107

3.  Genomic study and Medical Subject Headings enrichment analysis of early pregnancy rate and antral follicle numbers in Nelore heifers.

Authors:  G A Oliveira Júnior; B C Perez; J B Cole; M H A Santana; J Silveira; G Mazzoni; R V Ventura; M L Santana Júnior; H N Kadarmideen; D J Garrick; J B S Ferraz
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4.  Metabolomics for informing adverse outcome pathways: Androgen receptor activation and the pharmaceutical spironolactone.

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5.  Reduction of oocyte lipid droplets and meiotic failure due to biotin deficiency was not rescued by restoring the biotin nutritional status.

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6.  SIRT2 Is Critical for Sheep Oocyte Maturation through Regulating Function of Surrounding Granulosa Cells.

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7.  Docosahexaenoic acid and phenazine ethosulfate are not efficient lipid modulators for porcine in vitro maturation systems.

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8.  MALDI Mass Spectrometry Imaging of Lipids and Gene Expression Reveals Differences in Fatty Acid Metabolism between Follicular Compartments in Porcine Ovaries.

Authors:  Svetlana Uzbekova; Sebastien Elis; Ana-Paula Teixeira-Gomes; Alice Desmarchais; Virginie Maillard; Valerie Labas
Journal:  Biology (Basel)       Date:  2015-03-06

9.  Crosstalk between Peroxisomal Activities and Nrf2 Signaling in Porcine Embryos.

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Journal:  Antioxidants (Basel)       Date:  2021-05-13

10.  Response of Bovine Cumulus-Oocytes Complexes to Energy Pathway Inhibition during In Vitro Maturation.

Authors:  Paulina Lipinska; Ewa Sell-Kubiak; Piotr Pawlak; Zofia Eliza Madeja; Ewelina Warzych
Journal:  Genes (Basel)       Date:  2021-05-29       Impact factor: 4.096

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