Coenzyme Q10 restores oocyte mitochondrial function and fertility during reproductive aging

卵母细胞 生物 不育 辅酶Q10 线粒体 男科 卵巢储备 内科学 内分泌学 SIRT3 怀孕 细胞生物学 胚胎 遗传学 锡尔图因 医学 乙酰化 基因
作者
Assaf Ben‐Meir,Eliezer Burstein,Aluet Borrego‐Alvarez,Jasmine Chong,Ellen Wong,Tetyana Yavorska,Taline Naranian,Maggie Chi,Ying Wang,Yaakov Bentov,Jennifer Alexis,James Meriano,Hoon‐Ki Sung,David L. Gasser,Kelle H. Moley,Siegfried Hekimi,Robert F. Casper,Andrea Jurisicova
出处
期刊:Aging Cell [Wiley]
卷期号:14 (5): 887-895 被引量:407
标识
DOI:10.1111/acel.12368
摘要

Summary Female reproductive capacity declines dramatically in the fourth decade of life as a result of an age‐related decrease in oocyte quality and quantity. The primary causes of reproductive aging and the molecular factors responsible for decreased oocyte quality remain elusive. Here, we show that aging of the female germ line is accompanied by mitochondrial dysfunction associated with decreased oxidative phosphorylation and reduced Adenosine tri‐phosphate ( ATP ) level. Diminished expression of the enzymes responsible for CoQ production, Pdss2 and Coq6, was observed in oocytes of older females in both mouse and human. The age‐related decline in oocyte quality and quantity could be reversed by the administration of CoQ10. Oocyte‐specific disruption of Pdss2 recapitulated many of the mitochondrial and reproductive phenotypes observed in the old females including reduced ATP production and increased meiotic spindle abnormalities, resulting in infertility. Ovarian reserve in the oocyte‐specific Pdss2 ‐deficient animals was diminished, leading to premature ovarian failure which could be prevented by maternal dietary administration of CoQ10. We conclude that impaired mitochondrial performance created by suboptimal CoQ10 availability can drive age‐associated oocyte deficits causing infertility.
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