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N-糖基化组织蛋白酶L水平升高会损害卵母细胞功能,并导致生殖衰老过程中的卵母细胞衰老。

Elevated N-glycosylated cathepsin L impairs oocyte function and contributes to oocyte senescence during reproductive aging.

作者信息

Zhang Kemei, Xu Rui, Zheng Lu, Zhang Hong, Qian Zhang, Li Chuwei, Xue Mengqi, He Zhaowanyue, Ma Jinzhao, Li Zhou, Chen Li, Ma Rujun, Yao Bing

机构信息

Department of Reproductive Medicine, Jinling Clinical Medical College, Nanjing Medical University, Nanjing, China.

Department of Reproductive Medicine, Jinling Hospital, Affiliated Hospital of Medical School, Nanjing University, Nanjing, China.

出版信息

Aging Cell. 2025 Feb;24(2):e14397. doi: 10.1111/acel.14397. Epub 2024 Nov 4.

Abstract

Age-related declines in oocyte quality and ovarian function are pivotal contributors to female subfertility in clinical settings. Yet, the mechanisms driving ovarian aging and oocyte senescence remain inadequately understood. The present study evaluated the alterations in N-glycoproteins associated with ovarian aging and noted a pronounced elevation in N221 glycopeptides of cathepsin L (Ctsl) in the ovaries of reproductive-aged mice (8-9 months and 11-12 months) compared to younger counterparts (6-8 weeks). Subsequent analysis examined the involvement of Ctsl in oocyte aging and demonstrated a significant elevation in Ctsl levels in aged oocytes. Further, it was revealed that the overexpression of Ctsl in young oocytes substantially diminished their quality, while oocytes expressing an N221-glycosylation mutant of Ctsl did not suffer similar quality degradation. This finding implies that the N221 glycosylation of Ctsl is pivotal in modulating its effect on oocyte health. The introduction of a Ctsl inhibitor into the culture medium restored oocyte quality in aged oocytes by enhancing mitochondrial function, reducing accumulated reactive oxygen species (ROS), lowering apoptosis, and recovering lysosome capacity. Furthermore, the targeted downregulation of Ctsl using siRNA microinjection in aged oocytes enhanced fertilization capability and blastocyst formation, affirming the role of Ctsl knockdown in fostering oocyte quality and embryonic developmental potential. In conclusion, these findings underscore the detrimental effects of high expression of N-glycosylated Ctsl on oocyte quality and its contribution to oocyte senescence, highlighting it as a potential therapeutic target to delay ovarian aging and enhance oocyte viability.

摘要

与年龄相关的卵母细胞质量和卵巢功能下降是临床中女性生育力低下的关键因素。然而,驱动卵巢衰老和卵母细胞衰老的机制仍未得到充分了解。本研究评估了与卵巢衰老相关的N-糖蛋白的变化,并注意到与年轻小鼠(6-8周)相比,生殖年龄小鼠(8-9个月和11-12个月)卵巢中组织蛋白酶L(Ctsl)的N221糖肽明显升高。随后的分析研究了Ctsl在卵母细胞衰老中的作用,并证明衰老卵母细胞中Ctsl水平显著升高。此外,研究发现,年轻卵母细胞中Ctsl的过表达显著降低了它们的质量,而表达Ctsl的N221-糖基化突变体的卵母细胞没有受到类似的质量下降。这一发现表明Ctsl的N221糖基化在调节其对卵母细胞健康的影响中起关键作用。在培养基中引入Ctsl抑制剂可通过增强线粒体功能、减少活性氧(ROS)积累、降低细胞凋亡和恢复溶酶体能力来恢复衰老卵母细胞的质量。此外,在衰老卵母细胞中使用siRNA显微注射靶向下调Ctsl可提高受精能力和囊胚形成率,证实了敲低Ctsl对提高卵母细胞质量和胚胎发育潜力的作用。总之,这些发现强调了N-糖基化Ctsl高表达对卵母细胞质量的有害影响及其对卵母细胞衰老的作用,突出了它作为延缓卵巢衰老和提高卵母细胞活力的潜在治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7680/11822660/f8a2363a50d3/ACEL-24-e14397-g007.jpg

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