Young R J, Cooper G W
J Reprod Fertil. 1983 Sep;69(1):1-10. doi: 10.1530/jrf.0.0690001.
Primary amines, pyridoxal and thiols induced separation of the mammalian sperm head and tail at specific sites across the head-tail junction. Primary amines and pyridoxal induced head detachment by allowing separation of the inner and outer nuclear envelope membranes adjacent to the tail basal plates. This detachment was prevented by prior reduction with sodium cyanoborohydride. The chemistry of amine-induced head separation and the similar action of pyridoxal indicate that the head and tail are joined by Schiff bases formed between proteins within the nuclear membranes. Head detachment with thiols occurred at two sites: across the connecting filaments linking the basal plate and the capitulum of the tail-neck complex and between the inner nuclear membrane and the nuclear chromatin. Mammalian epididymal spermatozoa exhibited species differences in susceptibility to head detachment induced by hydromechanical shear. The heads of mouse epididymal spermatozoa readily separated from the tails during vortexing whereas those from the vas deferens were resistant to shear. Head separation occurred at the same site as induced by primary amines. Rabbit spermatozoa from all parts of the epididymis were resistant to mechanical shear. Species differences in the mechanical stability of the head-tail junction suggest that the intermolecular Schiff bases linking the head and tail can be formed before or during sperm transport in the epididymis and that their formation probably occurs after the appearance of the periodic structures which bridge the inner and outer membranes of the nucleus in the region of the tail basal plate.
伯胺、吡哆醛和硫醇可诱导哺乳动物精子的头部和尾部在头尾连接处的特定部位分离。伯胺和吡哆醛通过使与尾基板相邻的内外核被膜分离来诱导头部脱离。预先用氰基硼氢化钠还原可防止这种脱离。胺诱导的头部分离的化学过程以及吡哆醛的类似作用表明,头部和尾部是通过核膜内蛋白质之间形成的席夫碱连接的。硫醇导致的头部脱离发生在两个部位:穿过连接尾颈部复合体基板和头部的连接丝,以及在内核膜和核染色质之间。哺乳动物附睾精子在对流体动力剪切诱导的头部脱离的敏感性上表现出物种差异。小鼠附睾精子的头部在涡旋过程中很容易与尾部分离,而来自输精管的精子则对剪切有抗性。头部分离发生在与伯胺诱导相同的部位。来自附睾所有部位的兔精子对机械剪切有抗性。头尾连接处机械稳定性的物种差异表明,连接头部和尾部的分子间席夫碱可能在精子在附睾中运输之前或期间形成,并且它们的形成可能发生在尾基板区域桥接核内外膜的周期性结构出现之后。