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The bovine cumulus proteome is influenced by maturation condition and maturational competence of the oocyte.


ABSTRACT: In vitro maturation (IVM) of oocytes has still a negative impact on the developmental competence of oocytes. Therefore, this study analysed the cumulus proteome of individual cumulus-oocyte complexes (COCs) with and without maturational competence, matured under in vivo or in vitro conditions (n?=?5 per group). A novel, ultrasensitive mass spectrometry (MS) based protein profiling approach, using label-free quantification, was applied. The detected cumulus proteome included 2226 quantifiable proteins and was highly influenced by the maturation condition (479 differentially expressed proteins) as well as maturational competence of the corresponding oocyte (424 differentially expressed proteins). Enrichment analysis showed an overrepresentation of the complement and coagulation cascades (CCC), ECM-receptor interaction and steroid biosynthesis in cumulus of COCs that matured successfully under in vivo conditions. Verification of the origin of CCC proteins was achieved through detection of C3 secretion into the maturation medium, with significantly increasing concentrations from 12 (48.4?ng/ml) to 24?hours (68?ng/ml: p?100x higher. In summary, this study identified important pathways that are impaired in IVM cumulus, as well as potential markers of the maturational competence of oocytes.

SUBMITTER: Walter J 

PROVIDER: S-EPMC7303117 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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The bovine cumulus proteome is influenced by maturation condition and maturational competence of the oocyte.

Walter J J   Monthoux C C   Fortes C C   Grossmann J J   Roschitzki B B   Meili T T   Riond B B   Hofmann-Lehmann R R   Naegeli H H   Bleul U U  

Scientific reports 20200618 1


In vitro maturation (IVM) of oocytes has still a negative impact on the developmental competence of oocytes. Therefore, this study analysed the cumulus proteome of individual cumulus-oocyte complexes (COCs) with and without maturational competence, matured under in vivo or in vitro conditions (n = 5 per group). A novel, ultrasensitive mass spectrometry (MS) based protein profiling approach, using label-free quantification, was applied. The detected cumulus proteome included 2226 quantifiable pro  ...[more]

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