首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Oxidative phosphorylation is essential for felid sperm function, but is substantially lower in cheetah (Acinonyx jubatus) compared to domestic cat (Felis catus) ejaculate.
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Oxidative phosphorylation is essential for felid sperm function, but is substantially lower in cheetah (Acinonyx jubatus) compared to domestic cat (Felis catus) ejaculate.

机译:氧化磷酸化对于猫的精子功能是必不可少的,但与射精的家猫(Felis catus)相比,猎豹(Acinonyx jubatus)的磷酰化水平要低得多。

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摘要

Compared with the normospermic domestic cat, sperm metabolic function is compromised in the teratospermic cat and cheetah, but the pathway(s) involved in this deficiency are unknown. Glycolysis is essential for sperm motility, yet it appears to function normally in spermatozoa of either species regardless of structural morphology. We conducted a comparative study to further understand the mechanisms of energy production in felid spermatozoa, with the hypothesis that oxidative phosphorylation is required for normal sperm function and is impaired in teratospermic ejaculates. Electroejaculates from both species were stained with MitoTracker to quantify mitochondrial membrane potential (MMP) or were incubated to assess changes in sperm function (motility, acrosomal integrity, and lactate production) after mitochondrial inhibition with myxothiazol. Sperm midpiece dimensions also were quantified. Sperm mitochondrial fluorescence (directly proportional to MMP) was ~95% lower in the cheetah compared with the normospermic and teratospermic cat, despite the cheetah having a 10% longer midpiece. In both species, MMP was increased 5-fold in spermatozoa with retained cytoplasm compared with structurally normal cells. Inhibition of oxidative phosphorylation impaired sperm function in both species, but a 100-fold higher inhibitor concentration was required in the cat compared with the cheetah. Collectively, findings revealed that oxidative phosphorylation was required for sperm function in the domestic cat and cheetah. This pathway of energy production appeared markedly less active in the cheetah, indicating a species-specific vulnerability to mitochondrial dysfunction. The unexpected, cross-species linkage between retained cytoplasmic droplets and elevated MMP may reflect increased concentrations of metabolic enzymes or substrates in these structures.
机译:与正常人的家猫相比,精子症的猫和猎豹的精子代谢功能受到损害,但这种缺乏的途径尚不清楚。糖酵解对于精子的活力至关重要,但是无论其结构形态如何,糖酵解似乎都能在任一物种的精子中正常发挥作用。我们进行了一项比较研究,以进一步了解猫的精子中能量产生的机制,并提出以下假设:精子的正常功能需要氧化磷酸化,精子射精中的磷酸化受损。用MitoTracker对两种物种的电射精进行染色,以定量线粒体膜电位(MMP),或将其孵育,以评估用噻唑唑抑制线粒体后精子功能的变化(运动性,顶体完整性和乳酸产生)。精子中段尺寸也被量化。尽管猎豹的中段时间长了10%,但与正常和畸胎的猫相比,猎豹中的线粒体荧光(与MMP成正比)降低了约95%。在两个物种中,与结构正常细胞相比,在保留细胞质的精子中,MMP增加了5倍。抑制氧化磷酸化会削弱这两种物种的精子功能,但与猎豹相比,在猫中需要的抑制剂浓度要高100倍。总的来说,研究结果表明家猫和猎豹的精子功能需要氧化磷酸化。这种能量产生的途径在猎豹中似乎没有那么活跃,表明它对线粒体功能障碍具有特定的脆弱性。保留的细胞质液滴与升高的MMP之间的意外的,跨物种的联系可能反映了这些结构中代谢酶或底物的浓度增加。

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