Li Yan, Dong Yan, Lin Xiaoxia, Zhou Xueyuan, Ma Li, Jin Hua
Department of Reproductive Medical Center, The Second Hospital Affiliated to Shandong University of Traditional Chinese Medicine, Jinan, China.
Department of Obstetrics and Gynecology, The Second Hospital Affiliated to Shandong University of Traditional Chinese Medicine, Jinan, China.
Mol Reprod Dev. 2025 Jul;92(7):e70042. doi: 10.1002/mrd.70042.
Enhancing the developmental competence and quality of oocytes cultured in vitro remains challenging, in part due to limited understanding of the structural and molecular regulators of oocyte maturation. Microtubules, as key components of the cytoskeleton, are essential for chromosome segregation and meiotic progression. Tubulin beta 1 class VI (TUBB1) plays crucial roles in cellular stability, yet its involvement in regulating endoplasmic reticulum (ER) stress and mitochondrial function in oocytes via immune checkpoint pathways remains unclear. This study aimed to investigate the role of TUBB1 in regulating ER stress and mitochondrial integrity in oocytes via the transforming growth factor-β1 (TGF-β1)/SMAD family member 3 (Smad3) pathway, and its potential implications for improving assisted reproductive technologies. First, oocytes isolated from ICR female mice were subjected to oxidative stress using hydrogen peroxide (H₂O₂) to investigate TUBB1 expression. Next, lentiviral vectors and a TGF-β1/Smad3 activator (SRI-011381 hydrochloride) were utilized to modulate pathway activity. ER stress, mitochondrial integrity, oxidative stress, and apoptosis were subsequently assessed. H₂O₂ exposure significantly reduced TUBB1 expression, confirming its susceptibility to oxidative stress. TUBB1 silencing exacerbated ER stress (elevated Bax, GRP78, Caspase-12; decreased Bcl-2), increased apoptosis rates, and caused mitochondrial dysfunction evidenced by disrupted mitochondrial morphology; increased Ca²⁺ levels, higher ROS and MDA, and lower SOD activity. Conversely, TUBB1 overexpression or direct activation of the TGF-β1/Smad3 pathway reversed these detrimental effects, significantly reducing apoptosis, normalizing mitochondrial distribution, and alleviating ER and oxidative stress. Furthermore, activation of the TGF-β1/Smad3 pathway in TUBB1-silenced oocytes (rescue group) effectively restored mitochondrial and ER stress parameters to normal levels. Our findings demonstrate that TUBB1 plays a critical role in modulating ER and mitochondrial stress responses in oocytes via the TGF-β1/Smad3 signaling pathway. Targeted regulation of TUBB1 may serve as a promising therapeutic approach to improve oocyte quality in assisted reproductive technologies.
提高体外培养卵母细胞的发育能力和质量仍然具有挑战性,部分原因是对卵母细胞成熟的结构和分子调节因子了解有限。微管作为细胞骨架的关键组成部分,对于染色体分离和减数分裂进程至关重要。微管蛋白β1六类(TUBB1)在细胞稳定性中起关键作用,但其通过免疫检查点途径参与调节卵母细胞内质网(ER)应激和线粒体功能仍不清楚。本研究旨在探讨TUBB1通过转化生长因子-β1(TGF-β1)/SMAD家族成员3(Smad3)途径调节卵母细胞内质网应激和线粒体完整性的作用,及其对改善辅助生殖技术的潜在意义。首先,从ICR雌性小鼠分离的卵母细胞用过氧化氢(H₂O₂)进行氧化应激处理,以研究TUBB1的表达。接下来,利用慢病毒载体和TGF-β1/Smad3激活剂(盐酸SRI-011381)来调节该途径的活性。随后评估内质网应激、线粒体完整性、氧化应激和细胞凋亡情况。H₂O₂暴露显著降低了TUBB1的表达,证实其对氧化应激敏感。TUBB1沉默加剧了内质网应激(Bax、GRP78、Caspase-12升高;Bcl-2降低),增加了细胞凋亡率,并导致线粒体功能障碍,表现为线粒体形态破坏;钙水平升高、活性氧和丙二醛含量增加,超氧化物歧化酶活性降低。相反,TUBB1过表达或直接激活TGF-β1/Smad3途径可逆转这些有害影响,显著减少细胞凋亡,使线粒体分布正常化,并减轻内质网和氧化应激。此外,在TUBB1沉默的卵母细胞(挽救组)中激活TGF-β1/Smad3途径可有效将线粒体和内质网应激参数恢复到正常水平。我们的研究结果表明,TUBB1通过TGF-β1/Smad3信号通路在调节卵母细胞内质网和线粒体应激反应中起关键作用。对TUBB1进行靶向调节可能是一种有前景的治疗方法,可改善辅助生殖技术中的卵母细胞质量。