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促卵泡激素受体单倍剂量不足模型中不存在卵巢加速衰老现象。

Lack of accelerated ovarian aging in a follicle-stimulating hormone receptor haploinsufficiency model.

作者信息

Mehalko Kristen, Kim Minhoo, Paye Sanjana, Koh Kelly, Lu Ryan J, Benayoun Bérénice A

机构信息

Leonard Davis School of Gerontology, University of Southern California, Los Angeles, CA 90089, USA.

Molecular and Computational Biology Department, USC Dornsife College of Letters, Arts and Sciences, Los Angeles, CA 90089, USA.

出版信息

Transl Med Aging. 2023;7:1-8. doi: 10.1016/j.tma.2023.01.001. Epub 2023 Jan 10.

Abstract

Follicle-stimulation hormone (FSH) and FSH receptor (FSHR) signaling is essential for lifelong ovarian and endocrine functions in females. Previous studies have reported that haploinsufficiency in female mice led to accelerated ovarian aging, including anticipated progressive fertility decline, irregular estrus cycles, increased follicular atresia and premature ovarian failure at 7 to 9 months of age. Interestingly, these phenotypes resemble key characteristics of human menopause and thus haploinsufficiency was proposed as a promising research mouse model of menopause. However, the haploinsufficiency model had not been fully explored, especially at the molecular level. In this study, we characterized the ovarian and endocrine functions of a heterozygous knockout allele that was generated on the C57BL/6 genetic background as part of the Knockout Mouse Project (KOMP). Based on our analyses of these mice using a breeding assay, ovarian tissue histology and serum hormone quantifications ( FSH, AMH, INHA) analyses, the KOMP heterozygous knockout female mice do not show the anticipated phenotypes of ovarian aging in terms of fertility and endocrine function. We further confirmed that the expression of is unaltered in the ovaries of the KOMP heterozygous knockout animals compared to wild-type. Together, our data suggests that the KOMP heterozygous knockout strain does not recapitulate the previously reported ovarian aging phenotypes associated to another model of haploinsufficiency.

摘要

促卵泡激素(FSH)和促卵泡激素受体(FSHR)信号传导对于雌性动物终身的卵巢和内分泌功能至关重要。先前的研究报道,雌性小鼠单倍剂量不足会导致卵巢加速衰老,包括预期的渐进性生育能力下降、发情周期不规律、卵泡闭锁增加以及在7至9个月龄时出现卵巢早衰。有趣的是,这些表型类似于人类更年期的关键特征,因此单倍剂量不足被提议作为一种有前景的更年期研究小鼠模型。然而,单倍剂量不足模型尚未得到充分探索,尤其是在分子水平上。在本研究中,我们对作为基因敲除小鼠项目(KOMP)一部分在C57BL/6遗传背景上产生的杂合敲除等位基因的卵巢和内分泌功能进行了表征。基于我们使用繁殖试验、卵巢组织组织学和血清激素定量(FSH、AMH、INHA)分析对这些小鼠的分析,KOMP杂合敲除雌性小鼠在生育能力和内分泌功能方面未表现出预期的卵巢衰老表型。我们进一步证实,与野生型相比,KOMP杂合敲除动物卵巢中该基因的表达未发生改变。总之,我们的数据表明,KOMP杂合敲除品系不能重现先前报道的与另一种单倍剂量不足模型相关的卵巢衰老表型。

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