Center of Excellence for Stem Cells and Regenerative Medicine, Zewail City of Science and Technology, Egypt.
Center of Excellence for Stem Cells and Regenerative Medicine, Zewail City of Science and Technology, Egypt.
Mech Ageing Dev. 2018 Oct;175:88-99. doi: 10.1016/j.mad.2018.05.009. Epub 2018 Jun 8.
Cellular reprograming paves the way for creating functional patient-specific tissues to eliminate immune rejection responses by applying the same genetic profile. However, the epigenetic memory of a cell remains a challenge facing the current reprograming methods and does not allow transcription factors to bind properly. Because somatic cells can be reprogramed by transferring their nuclear contents into oocytes, introducing specific oocyte factors into differentiated cells is considered a promising approach for mimicking the reprograming process that occurs during fertilization. Mammalian metaphase II oocyte possesses a superior capacity to epigenetically reprogram somatic cell nuclei towards an embryonic stem cell-like state than the current factor-based reprograming approaches. This may be due to the presence of specific factors that are lacking in the current factor-based reprograming approaches. In this review, we focus on studies identifying human oocyte-enriched factors aiming to understand the molecular mechanisms mediating cellular reprograming. We describe the role of oocyte-enriched factors in metabolic switch, chromatin remodelling, and global epigenetic transformation. This is critical for improving the quality of resulting reprogramed cells, which is crucial for therapeutic applications.
细胞重编程为创建功能性患者特异性组织铺平了道路,通过应用相同的遗传特征来消除免疫排斥反应。然而,细胞的表观遗传记忆仍然是当前重编程方法面临的一个挑战,它不允许转录因子正确结合。由于体细胞可以通过将其核内容转移到卵母细胞中来重编程,因此将特定的卵母细胞因子引入分化细胞被认为是模拟受精过程中发生的重编程过程的一种有前途的方法。与当前基于因子的重编程方法相比,哺乳动物中期卵母细胞具有将体细胞细胞核重编程为胚胎干细胞样状态的卓越能力。这可能是由于存在当前基于因子的重编程方法中缺乏的特定因子。在这篇综述中,我们重点介绍了鉴定人类卵母细胞富集因子的研究,旨在了解介导细胞重编程的分子机制。我们描述了卵母细胞富集因子在代谢转换、染色质重塑和全局表观遗传转化中的作用。这对于提高重编程细胞的质量至关重要,这对于治疗应用至关重要。