Department of Bioscience and Biotechnology, Konkuk University, Seoul 05029, Republic of Korea.
Nutrients. 2022 Dec 19;14(24):5403. doi: 10.3390/nu14245403.
Oocyte quality is essential for reproductive capacity, but it rapidly declines with age. In addition to aging, maternal nutrition is a major concern in maintaining oocyte quality. Gliadin, a major component of gluten, causes gluten toxicity, which has been reported in a variety of gluten-related disorders. The basis of gluten toxicity in reproduction is being understood using simple animal models such as . In this study, we examined the effects of gliadin peptide (GP; amino acids 151-170) intake on oocyte quality control in . We found that GP intake impaired oocyte quality through chromosomal aberrations and mitochondrial oxidative stress, which was suppressed by antioxidant treatment. The reduced oocyte quality by GP intake consequently increased embryonic lethality. Furthermore, the expression of oxidative stress-responding genes and was significantly increased by GP intake. The increased DAF-16 activity by GP intake suggests that DAF-16 is a possible transactivator of these antioxidant genes. Taken together, GP intake reduced reproductive capacity in by decreasing oocyte quality and increasing embryonic lethality through mitochondrial oxidative stress.
卵母细胞质量对于生殖能力至关重要,但随着年龄的增长,其质量会迅速下降。除了衰老,母体营养也是维持卵母细胞质量的一个主要关注点。麦胶蛋白是 gluten 的主要成分,可引起 gluten 毒性,已在多种与 gluten 相关的疾病中报道。使用简单的动物模型,如 ,正在了解 gluten 毒性在生殖中的基础。在这项研究中,我们研究了麦胶蛋白肽(GP;氨基酸 151-170)摄入对 的卵母细胞质量控制的影响。我们发现,GP 摄入通过染色体畸变和线粒体氧化应激损害卵母细胞质量,抗氧化处理可抑制这种损害。GP 摄入导致的卵母细胞质量降低继而增加胚胎致死率。此外,GP 摄入显著增加了氧化应激应答基因 和 的表达。GP 摄入增加 DAF-16 活性表明 DAF-16 可能是这些抗氧化基因的转录激活子。总之,GP 摄入通过减少卵母细胞质量和增加胚胎致死率,降低了 的生殖能力,其机制可能与线粒体氧化应激有关。