Effect of Leptin in Human Sertoli Cells Mitochondrial Physiology.

IF 2.6 3区 医学 Q2 OBSTETRICS & GYNECOLOGY Reproductive Sciences Pub Date : 2021-03-01 Epub Date: 2020-09-30 DOI:10.1007/s43032-020-00328-x
Bruno P Moreira, Ana M Silva, Ana D Martins, Mariana P Monteiro, Mário Sousa, Pedro F Oliveira, Marco G Alves
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引用次数: 3

Abstract

Leptin is an adipose tissue hormone that acts as energy sensor and reproductive function regulator. Recent reports suggest that leptin is involved in mitochondrial biogenesis in different tissue cells. Herein, we hypothesized that leptin could also affect Sertoli cells mitochondrial dynamics and biogenesis. Human Sertoli cells (hSCs) were cultured in the presence of different leptin concentrations (5, 25 and 50 ng/mL) or vehicle for 24 h. The three different leptin concentrations were selected to mimic the circulating levels found either in normal weight, obese, and morbidly obese individuals, respectively. Leptin receptor (LEPR) expression was evaluated as well as mitochondrial membrane potential, complexes levels, complex II activity and basal respiration. Moreover, mitochondrial DNA copy number and expression of mitochondrial biogenesis markers were assessed. In hSCs, leptin concentrations similar to those found both in lean men decreased mitochondrial complex II protein levels, but no changes in its activity were observed. This is in agreement with basal respiration and mitochondrial membrane potential assessments, which indicate no alterations in mitochondrial fitness. Furthermore, no changes in mitochondrial biogenesis markers were observed upon leptin exposure, although SIRT1/3 levels were increased after exposure to the highest leptin concentration. Overall, the increase in SIRT1/3 levels suggests a role for leptin in glycolysis, which given the relevance of SCs glycolytic flux for germ cells nutritional support further reinforces that this mechanism can be linked to obesity-related subfertility/infertility.

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瘦素对人支持细胞线粒体生理的影响。
瘦素是一种脂肪组织激素,具有能量传感器和生殖功能调节剂的作用。最近的报道表明,瘦素参与了不同组织细胞的线粒体生物发生。在此,我们假设瘦素也可能影响支持细胞的线粒体动力学和生物发生。将人支持细胞(hsc)在不同瘦素浓度(5、25和50 ng/mL)或载体中培养24小时。选择三种不同的瘦素浓度,分别模拟正常体重、肥胖和病态肥胖个体的循环水平。评估瘦素受体(LEPR)表达、线粒体膜电位、复合物水平、复合物II活性和基础呼吸。此外,评估线粒体DNA拷贝数和线粒体生物发生标志物的表达。在造血干细胞中,瘦素浓度与瘦人相似,降低了线粒体复合体II蛋白水平,但未观察到其活性的变化。这与基础呼吸和线粒体膜电位评估一致,表明线粒体适应性没有改变。此外,尽管SIRT1/3水平在暴露于最高瘦素浓度后升高,但在瘦素暴露后,线粒体生物发生标志物没有发生变化。总的来说,SIRT1/3水平的增加表明瘦素在糖酵解中起作用,考虑到SCs糖酵解通量与生殖细胞营养支持的相关性,这进一步强化了这种机制可能与肥胖相关的低生育能力/不孕症有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Reproductive Sciences
Reproductive Sciences 医学-妇产科学
CiteScore
5.50
自引率
3.40%
发文量
322
审稿时长
4-8 weeks
期刊介绍: Reproductive Sciences (RS) is a peer-reviewed, monthly journal publishing original research and reviews in obstetrics and gynecology. RS is multi-disciplinary and includes research in basic reproductive biology and medicine, maternal-fetal medicine, obstetrics, gynecology, reproductive endocrinology, urogynecology, fertility/infertility, embryology, gynecologic/reproductive oncology, developmental biology, stem cell research, molecular/cellular biology and other related fields.
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