Osborn J C, Duncan C J, Smith J L
J Cell Biol. 1979 Mar;80(3):589-604. doi: 10.1083/jcb.80.3.589.
Treatment of stage 5 Xenopus embryos with the ionophore A23187 for only 10 min, in the absence of extracellular Mg2+ and Ca2+, causes cortical contractions and a high incidence of abnormal embryos during subsequent development. Cation analysis shows that divalent ions are not lost from the embryos, but that Ca2+ is redistributed within the subcellular fractions. Ca2+ is probably released from yolk platelets and/or pigment granules by the action of A23187, [Ca2+] rises in the cytosol, and the mitochondria attempt to take up this free Ca2+. The mitochondria concomitantly undergo characteristic ultrastructural transformations, changing towards energized-twisted and energized-zigzag conformations. A23187 allows these changes to be demonstrated in situ. Extracellular divalent cations (10(-4) M) interfere with this intracellular action of A23187. Intracellular accumulation of Na+ (by treatment with ouabain) or Li+ also causes abnormal development, probably by promoting a release of Ca2+ from the mitochondria. It is suggested (a) that all these treatments cause a rise in [Ca2+]i which interferes with normal, integrated cell division, so causing, in turn, abnormal embryogenesis, (b) that levels of [Ca2+]i are of importance in regulating cleavage, (c) that the mitochondria could well have a function in regulating [Ca2+]i during embryogenesis in Xenopus, and (d) that vegetalizing agents may well act by promoting a rise in [Ca2+]i in specific cells in the amphibian embryo.
在没有细胞外镁离子和钙离子的情况下,用离子载体A23187处理5期非洲爪蟾胚胎仅10分钟,会导致皮质收缩,并在随后的发育过程中出现高比例的异常胚胎。阳离子分析表明,二价离子并未从胚胎中流失,但钙离子在亚细胞组分中发生了重新分布。钙离子可能通过A23187的作用从卵黄小板和/或色素颗粒中释放出来,细胞质中的[Ca2+]升高,线粒体试图摄取这种游离钙离子。线粒体同时会经历特征性的超微结构转变,向活跃扭曲和活跃锯齿状构象转变。A23187使这些变化能够在原位得到证明。细胞外二价阳离子(10^(-4) M)会干扰A23187的这种细胞内作用。细胞内钠离子(通过哇巴因处理)或锂离子的积累也会导致异常发育,可能是通过促进线粒体释放钙离子。有人提出:(a)所有这些处理都会导致[Ca2+]i升高,从而干扰正常的、整合的细胞分裂,进而导致异常胚胎发生;(b)[Ca2+]i水平在调节卵裂中很重要;(c)线粒体很可能在非洲爪蟾胚胎发育过程中具有调节[Ca2+]i 的功能;(d)植物化剂很可能通过促进两栖类胚胎特定细胞中[Ca2+]i升高而起作用。