Donovan P J, De Miguel M P, Hirano M P, Parsons M S, Lincoln A J
Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, PA 19107, USA.
Int J Dev Biol. 2001;45(3):523-31.
Germ cells hold a unique place in the life cycle of animal species in that they are the cells that will carry the genome on to the next generation. In order to do this they must retain their DNA in a state in which it can be used to recapitulate embryonic development. In the normal life cycle, the germ cells are the only cells that retain this ability to recapitulate development, referred to as developmental totipotency. The molecular mechanisms regulating developmental potency are poorly understood. Recently its has been shown that germ cells can be turned into pluripotent stem cells when cultured in specific polypeptide growth factors that affect their survival and proliferation. The ability to manipulate developmental potency in germ cells with growth factors allows the underlying mechanisms to be dissected. Germ cells are also the only cells that undergo the unique reductive division of meiosis. This too is essential for the ability of germ cells to form the gametes that will carry the genome into the next generation. Arguably meiosis is the most important division in the life of a nascent organism. Defects in meiosis can result in embryonic or fetal loss or, if the animal survives, in the birth of an individual with chromosomal abnormalities. Recent advances in our understanding of meiosis have come from knockout mice and studies on genes identified through studies of human infertility. This review will focus on these two key aspects of germ cell biology, developmental potency and meiosis.
生殖细胞在动物物种的生命周期中占据着独特的地位,因为它们是将基因组传递给下一代的细胞。为了实现这一点,它们必须将DNA保持在一种可用于重演胚胎发育的状态。在正常的生命周期中,生殖细胞是唯一保留这种重演发育能力的细胞,这种能力被称为发育全能性。调节发育潜能的分子机制目前还知之甚少。最近有研究表明,当生殖细胞在影响其存活和增殖的特定多肽生长因子中培养时,可以转化为多能干细胞。利用生长因子操纵生殖细胞发育潜能的能力使得我们能够剖析其潜在机制。生殖细胞也是唯一进行独特的减数分裂还原分裂的细胞。这对于生殖细胞形成将基因组带入下一代的配子的能力同样至关重要。可以说,减数分裂是新生生物体生命中最重要的分裂过程。减数分裂缺陷可能导致胚胎或胎儿丢失,或者如果动物存活下来,则会导致出生具有染色体异常的个体。我们对减数分裂的理解最近取得的进展来自基因敲除小鼠以及对通过人类不育研究鉴定出的基因的研究。本综述将聚焦于生殖细胞生物学的这两个关键方面,即发育潜能和减数分裂。