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生殖衰老小鼠卵巢中可变剪接模式的失调。

Dysregulation of alternative splicing patterns in the ovaries of reproductively aged mice.

作者信息

Alvarez Nehemiah S, Brachova Pavla

机构信息

Department of Biomedical and Translational Sciences, Division of Woman and Child Health, Eastern Virginia Medical School, Macon and Joan Brock Virginia Health Sciences, Old Dominion University, Norfolk, VA, USA.

Advanced Sequencing Program, Eastern Virginia Medical School, Macon and Joan Brock Virginia Health Sciences, Old Dominion University, Norfolk, VA, USA.

出版信息

bioRxiv. 2025 May 23:2025.05.19.654918. doi: 10.1101/2025.05.19.654918.

Abstract

Female reproductive aging is characterized by progressive deterioration of ovarian function, yet the molecular mechanisms driving these changes remain incompletely understood. Here, we used long-read direct RNA-sequencing to map transcript isoform changes in mouse ovaries across reproductive age. Comparing young and aged mice after controlled gonadotropin stimulation, we identified widespread alternative splicing changes, including shifts in exon usage, splice site selection, and transcript boundaries. Aged ovaries exhibited increased isoform diversity, favoring distal start and end sites, and a significant rise in exon skipping and intron retention events. Many of these age-biased splicing events altered open reading frames, introduced premature stop codons, or disrupted conserved protein domains. Notably, mitochondrial genes were disproportionately affected. We highlight , a mitochondrial Complex I subunit, as a case in which aging promotes the alternative splicing of a truncated isoform lacking the canonical Pfam domain. Structural modeling suggests this splice variant could impair Complex I function, resulting in increased ROS production. Our data suggest a mechanistic link between splicing and mitochondrial dysfunction in the aging ovary. These findings support the model of the splicing-energy-aging axis in ovarian physiology, wherein declining mitochondrial function and adaptive or maladaptive splicing changes are intertwined. Our study reveals that alternative splicing is not merely a byproduct of aging but a dynamic, transcriptome-wide regulatory layer that may influence ovarian longevity. These insights open new avenues for investigating post-transcriptional mechanisms in reproductive aging and underscore the need to consider isoform-level regulation in models of ovarian decline.

摘要

女性生殖衰老的特征是卵巢功能逐渐衰退,然而驱动这些变化的分子机制仍未完全明确。在此,我们使用长读长直接RNA测序来绘制小鼠卵巢在整个生殖年龄阶段的转录本异构体变化情况。在控制性促性腺激素刺激后,比较年轻和年老小鼠,我们发现了广泛的可变剪接变化,包括外显子使用、剪接位点选择和转录本边界的改变。老年卵巢表现出异构体多样性增加,倾向于远端起始和终止位点,外显子跳跃和内含子保留事件显著增加。许多这些与年龄相关的剪接事件改变了开放阅读框,引入了提前终止密码子,或破坏了保守的蛋白质结构域。值得注意的是,线粒体基因受到的影响尤为显著。我们重点关注了线粒体复合体I亚基,在衰老过程中它会促进一种缺乏典型Pfam结构域的截短异构体的可变剪接。结构建模表明这种剪接变体可能会损害复合体I的功能,导致活性氧生成增加。我们的数据表明衰老卵巢中剪接与线粒体功能障碍之间存在机制上的联系。这些发现支持了卵巢生理学中剪接-能量-衰老轴的模型,其中线粒体功能下降与适应性或非适应性剪接变化相互交织。我们的研究表明可变剪接不仅仅是衰老的副产品,而是一个动态的、全转录组范围的调控层面,可能会影响卵巢寿命。这些见解为研究生殖衰老中的转录后机制开辟了新途径,并强调在卵巢衰退模型中考虑异构体水平调控的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f955/12139913/9c7df2fda793/nihpp-2025.05.19.654918v2-f0001.jpg

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