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Impact of glycosylation on the unimpaired functions of the sperm

机译:糖基化对精子功能未受影响的影响

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摘要

One of the key factors of early development is the specification of competence between the oocyte and the sperm, which occurs during gametogenesis. However, the starting point, growth, and maturation for acquiring competence during spermatogenesis and oogenesis in mammals are very different. Spermatogenesis includes spermiogenesis, but such a metamorphosis is not observed during oogenesis. Glycosylation, a ubiquitous modification, is a preliminary requisite for distribution of the structural and functional components of spermatids for metamorphosis. In addition, glycosylation using epididymal or female genital secretory glycans is an important process for the sperm maturation, the acquisition of the potential for fertilization, and the acceleration of early embryo development. However, nonemzymatic unexpected covalent bonding of a carbohydrate and malglycosylation can result in falling fertility rates as shown in the diabetic male. So far, glycosylation during spermatogenesis and the dynamics of the plasma membrane in the process of capacitation and fertilization have been evaluated, and a powerful role of glycosylation in spermatogenesis and early development is also suggested by structural bioinformatics, functional genomics, and functional proteomics. Further understanding of glycosylation is needed to provide a better understanding of fertilization and embryo development and for the development of new diagnostic and therapeutic tools for infertility.
机译:早期发育的关键因素之一是在配子发生过程中卵母细胞和精子之间的能力差异。但是,哺乳动物在精子发生和卵子发生过程中获得能力的起点,生长和成熟是非常不同的。精子发生包括精子发生,但是在卵子发生过程中未观察到这种变态。糖基化是一种无处不在的修饰,是精子的结构和功能成分分布的先决条件。此外,使用附睾或女性生殖器分泌聚糖进行糖基化是精子成熟,获得受精潜力以及加速早期胚胎发育的重要过程。但是,碳水化合物的非酶促非预期共价键结合和糖基化可能导致生育率下降,如糖尿病男性所示。到目前为止,已经评估了精子发生过程中的糖基化以及获能和受精过程中质膜的动力学,并且结构生物信息学,功能基因组学和功能蛋白质组学还暗示了糖基化在精子发生和早期发育中的强大作用。需要对糖基化有进一步的了解,以便更好地了解受精和胚胎发育以及开发新的不育诊断和治疗工具。

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