Breininger E, Vecchi Galenda B E, Alvarez G M, Gutnisky C, Cetica P D
Area of Biochemistry, Institute of Research and Technology in Animal Production (INITRA), School of Veterinary Sciences, University of Buenos Aires, Buenos Aires, Argentina; Institute of Researches in Animal Production (INPA), UBA-CONICET (National Scientific and Technical Research Council), Buenos Aires, Argentina.
Reprod Domest Anim. 2014 Dec;49(6):1068-73. doi: 10.1111/rda.12437. Epub 2014 Oct 11.
Oocyte maturation depends on the metabolic activity of cumulus-oocyte complex (COC) that performs nutritive and regulatory functions during this process. In this work, the enzymes [phosphofructokinase (PFK) and malate dehydrogenase (MDH)] were tested to elucidate the metabolic profile of porcine COCs during the in vitro maturation (IVM). Enzymatic activity was expressed in U/COC and U/mg protein (specific activity) as mean ± SEM. In vitro maturation was performed with 2-oxoglutarate (5, 10 and 20 mm) or hydroxymalonate (30, 60 and 100 mm) inhibitors of PFK and MDH, respectively. The PFK and MDH activities (U) remained constant during maturation. For PFK, the U were (2.48 ± 0.23) 10(-5) and (2.54 ± 0.32) 10(-5) , and for MDH, the U were (4.72 ± 0.42) 10(-5) and (4.38 ± 0.25) 10(-5) for immature and in vitro matured COCs, respectively. The specific activities were significantly lower after IVM, for PFK (4.29 ± 0.48) 10(-3) and (0.94 ± 0.12) 10(-3) , and for MDH (9.08 ± 0.93) 10(-3) and (1.89 ± 0.10) 10(-3) for immature and in vitro matured COCs, respectively. In vitro maturation percentages and enzymatic activity diminished with 20 mm 2-oxoglutarate or 60 mm hydroxymalonate (p < 0.05). Viability was not affected by any concentration of the inhibitors evaluated. The U remained unchanged during IVM; however, the increase in the total protein content per COC provoked a decrease in the specific activity of both enzymes. Phosphofructokinase and MDH necessary for oocyte IVM would be already present in the immature oocyte. The presence of inhibitors of these enzymes impairs the meiotic maturation. Therefore, the participation of these enzymes in the energy metabolism of the porcine oocyte during IVM is confirmed in this study.
卵母细胞成熟依赖于卵丘-卵母细胞复合体(COC)的代谢活性,该复合体在此过程中发挥营养和调节功能。在本研究中,对[磷酸果糖激酶(PFK)和苹果酸脱氢酶(MDH)]这两种酶进行检测,以阐明猪COC在体外成熟(IVM)过程中的代谢特征。酶活性以U/COC和U/mg蛋白(比活性)表示,数据为平均值±标准误。分别用2-氧代戊二酸(5、10和20 mM)或羟基丙二酸(30、60和100 mM)作为PFK和MDH的抑制剂进行体外成熟实验。在成熟过程中,PFK和MDH的活性(U)保持恒定。对于PFK,未成熟和体外成熟的COC的U值分别为(2.48±0.23)×10⁻⁵和(2.54±0.32)×10⁻⁵;对于MDH,未成熟和体外成熟的COC的U值分别为(4.72±0.42)×10⁻⁵和(4.38±0.25)×10⁻⁵。IVM后,比活性显著降低,对于PFK,未成熟和体外成熟的COC分别为(4.29±0.48)×10⁻³和(0.94±0.12)×10⁻³;对于MDH,未成熟和体外成熟的COC分别为(9.08±0.93)×10⁻³和(1.89±0.10)×10⁻³。20 mM 2-氧代戊二酸或60 mM羟基丙二酸处理后,体外成熟率和酶活性降低(p<0.05)。所评估的任何浓度的抑制剂均未影响细胞活力。在IVM过程中,U值保持不变;然而,每个COC中总蛋白含量的增加导致两种酶的比活性降低。卵母细胞IVM所需的磷酸果糖激酶和MDH在未成熟卵母细胞中可能已经存在。这些酶的抑制剂的存在会损害减数分裂成熟。因此,本研究证实了这些酶在猪卵母细胞IVM期间能量代谢中的参与。