4.5 Article

Nonesterified Fatty Acid-Induced Endoplasmic Reticulum Stress in Cattle Cumulus Oocyte Complexes Alters Cell Metabolism and Developmental Competence

Journal

BIOLOGY OF REPRODUCTION
Volume 94, Issue 1, Pages -

Publisher

OXFORD UNIV PRESS INC
DOI: 10.1095/biolreprod.115.131862

Keywords

cattle; cumulus oocyte complex; endoplasmic reticulum stress; lipids; nonesterified fatty acids

Funding

  1. Gardiner Foundation [INN-12-041]
  2. South Australia's Premier's Science and Research Fund
  3. Australian Research Council Centre of Excellence for Nanoscale BioPhotonics [CE140100003]
  4. National Health & Medical Research Council [1077694, 1044969]

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Reduced oocyte quality has been associated with poor fertility of high-performance dairy cows during peak lactation, due to negative energy balance. We examined the role of nonesterified fatty acids (NEFAs), known to accumulate within follicular fluid during under- and overnutrition scenarios, in causing endoplasmic reticulum (ER) stress of in vitro maturated cattle cumulusoocyte complexes (COCs). NEFA concentrations were: palmitic acid (150 mu M), oleic acid (200 iuM), and steric acid (75 iuM). Abattoir-derived COCs were randomly matured for 24 h in the presence of NEFAs and/or an ER stress inhibitor, salubrinal. Total and hatched blastocyst yields were negatively impacted by NEFA treatment compared with controls, but this was reversed by salubrinal. ER stress markers, activating transcription factor 4 (Atf4) and heat shock protein 5 (Hspa5), but not Atf6, were significantly up-regulated by NEFA treatment within whole COCs but reversed by coincubation with salubrinal. Likewise, glucose uptake and lactate production, measured in spent medium samples, showed a similar pattern, suggesting that cumulus cell metabolism is sensitive to NEFAs via an ER stress mediated process. In contrast, while mitochondrial DNA copy number was recovered in NEFA-treated oocytes, oocyte autofluorescence of the respiratory chain cofactor, FAD, was lower following NEFA treatment of COCs, and this was not reversed by salubrinal, suggesting the negative impact was via reduced mitochondrial function. These results reveal the significance of NEFA-induced ER stress on bovine COC developmental competence, revealing a potential therapeutic target for improving oocyte quality during peak lactation.

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