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Recent knowledge concerning mammalian sperm chromatin organization and its potential weaknesses when facing oxidative challenge

机译:有关哺乳动物精子染色质组织及其在面临氧化挑战时的潜在弱点的最新知识

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摘要

Spermatozoa are the smallest and most cyto-differentiated mammalian cells. From a somatic cell-like appearance at the beginning of spermatogenesis, the male germ cell goes through a highly sophisticated process to reach its final organization entirely devoted to its mission which is to deliver the paternal genome to the oocyte. In order to fit the paternal DNA into the tiny spermatozoa head, complete chromatin remodeling is necessary. This review essentially focuses on present knowledge of this mammalian sperm nucleus compaction program. Particular attention is given to most recent advances that concern the specific organization of mammalian sperm chromatin and its potential weaknesses. Emphasis is placed on sperm DNA oxidative damage that may have dramatic consequences including infertility, abnormal embryonic development and the risk of transmission to descendants of an altered paternal genome.
机译:精子是最小且细胞分化最多的哺乳动物细胞。从精子发生开始时的体细胞状外观,雄性生殖细胞经历了高度复杂的过程,最终达到了完全致力于其使命的最终组织,即将父本基因组传递至卵母细胞。为了使父本DNA适合微小的精子头部,必须进行完整的染色质重塑。这项审查基本上侧重于这种哺乳动物的精子核压实程序的当前知识。特别关注与哺乳动物精子染色质的特定组织及其潜在弱点有关的最新进展。重点放在精子DNA氧化损伤上,该损伤可能会产生巨大的后果,包括不育,异常胚胎发育以及传染给父系基因组改变的后代的风险。

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