Signoret J, David J C, Lefresne J, Houillon C
Proc Natl Acad Sci U S A. 1983 Jun;80(11):3368-71. doi: 10.1073/pnas.80.11.3368.
A light form of DNA ligase (EC 6.5.1.2), the only form present in oocytes of the axolotl (Ambystoma mexicanum), has been shown to be replaced by a heavy form of the enzyme when the egg enters cleavage. This early biochemical event has been assumed to rely on direct nuclear input. Sucrose gradient analysis permits discrimination between enzymes from axolotl and the sharp-ribbed salamander (Pleurodeles waltlii) for both heavy and light enzymatic forms of DNA ligase. Genetic activity of blastula nuclei transplanted in activated cytoplasm has been tested by determination of the enzymatic forms and specific types of DNA ligases when the implanted egg enters cleavage. A blastula nucleus of Pleurodeles in axolotl cytoplasm determines a heavy ligase of the Pleurodeles type. Conversely, a haploid androgenetic nucleus of Pleurodeles in axolotl cytoplasm controls a light ligase of the Pleurodeles type. Reciprocal experiments give homologous results. To our knowledge, this is the earliest nucleus-dependent synthesis revealed in development for any system. The heavy ligase of one species may coexist with the light form of the other species but not with the light form of its own specific type. Inhibition of the production of the heavy form for one genome results in the expression of the light form. We conclude that genetic control of DNA ligase in very early development involves structural genes for heavy and light forms of enzyme, with an exclusion process operating an alternative expression of corresponding genes. This exclusion relationship between nonallelic genes is species specific.
一种轻型DNA连接酶(EC 6.5.1.2)是美西螈(钝口螈属墨西哥钝口螈)卵母细胞中存在的唯一形式,研究表明,当卵子进入卵裂期时,这种酶会被一种重型形式所取代。人们认为这一早期生化事件依赖于直接的细胞核输入。蔗糖梯度分析能够区分美西螈和肋突螈(肋突螈)的DNA连接酶的重型和轻型酶形式。当植入的卵子进入卵裂期时,通过测定酶形式和特定类型的DNA连接酶,测试了移植到活化细胞质中的囊胚细胞核的遗传活性。肋突螈的囊胚细胞核在美西螈细胞质中决定了肋突螈类型的重型连接酶。相反,肋突螈的单倍体雄核发育细胞核在美西螈细胞质中控制着肋突螈类型的轻型连接酶。相互对照实验给出了同源结果。据我们所知,这是在任何系统发育过程中揭示的最早的细胞核依赖性合成。一个物种的重型连接酶可能与另一个物种的轻型形式共存,但不会与其自身特定类型的轻型形式共存。对一个基因组重型形式产生的抑制会导致轻型形式的表达。我们得出结论,在非常早期的发育过程中,DNA连接酶的遗传控制涉及重型和轻型酶形式的结构基因,并且存在一个排除过程来控制相应基因的交替表达。非等位基因之间的这种排除关系是物种特异性的。