Circadian desynchrony disturbs the function of rat spermatozoa

TFAM公司 昼夜节律 生物 生物钟 内科学 内分泌学 隐色素 男科 时钟 细胞生物学 线粒体生物发生 线粒体 医学
作者
Dijana Z. Travicic,Maja V. Pavlovic,Marija Lj Medar,Alisa P. Becin,Mia Cetnik,Dušan Lalošević,Silvana A. Andrić,Tatjana S. Kostic
出处
期刊:European Journal of Cell Biology [Elsevier]
卷期号:102 (2): 151323-151323 被引量:3
标识
DOI:10.1016/j.ejcb.2023.151323
摘要

Decreased male fertility is a growing health problem that requires a better understanding of molecular events regulating reproductive competence. Here the effects of circadian desynchrony on the rat spermatozoa functionality were studied. Circadian desynchrony was induced in rats that lived for 2 months under disturbed light conditions designed to mimic shiftwork in humans (two days of constant light, two days of continual dark, and three days of 14:10 h light:dark schedule). Such a condition abolished circadian oscillations in the rats' voluntary activity, followed by a flattened transcriptional pattern of the pituitary gene encoding follicle stimulating hormone subunit (Fshb), and genes important for germ cell maturation (Tnp1 and Prm2) as well as the clock in seminiferous tubules. However, the number of spermatozoa isolated from the epididymis of the rats suffering from circadian desynchrony did not deviate from the controls. Nevertheless, spermatozoa functionality, estimated by motility and progesterone-induced acrosome reaction, was reduced compared to the control. These changes were associated with the altered level of main markers of mitochondrial biogenesis (Pprgc1a/PGC1A, Nrf1/NRF1, Tfam, Cytc), decreased mitochondrial DNA copy number, ATP content, and clock genes (Bmal1/BMAL1, Clock, Cry1/2, and Reverba). The principal-component-analysis (PCA) points to a positive association of the clock and mitochondrial biogenesis-related genes in spermatozoa from rats suffering circadian desynchrony. Altogether, the results show the harmful effect of circadian desynchrony on spermatozoa functionality, targeting energetic homeostasis.
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