Iouzalen N, Moreau J, Méchali M
Institut Jacques Monod, Molecular Embryology, Paris, France.
Nucleic Acids Res. 1996 Oct 15;24(20):3947-52. doi: 10.1093/nar/24.20.3947.
We have isolated from a subtractive cDNA library of Xenopus laevis a novel transcript, H2A.ZI, which belongs to the H2A.Z variant gene family. Characterization of its expression during oogenesis and development shows significant differences from the expression of the core histone H2A. First, H2A.ZI mRNA is mainly detected only during oogenesis and after the midblastula transition, whereas H2A is constitutively expressed, at much higher levels, throughout embryonic growth. Second, in contrast with H2A, the variant H2A.ZI is polyadenylated during development. Third, expression of H2A.ZI is uncoupled from the S phase after gastrula, whereas synthesis of the core histone H2A mRNA is tightly controlled to DNA replication. Interestingly, H2A.ZI is less charged in the N-terminal tail which is crucial for chromatin-mediated repression. The characteristics of H2A.ZI suggest that its incorporation into nucleosomes would lead to a chromatin structure more competent for gene expression during development.
我们从非洲爪蟾的消减cDNA文库中分离出一种新的转录本H2A.ZI,它属于H2A.Z变体基因家族。对其在卵子发生和发育过程中表达的特征分析表明,它与核心组蛋白H2A的表达存在显著差异。首先,H2A.ZI mRNA主要仅在卵子发生期间和囊胚中期转变后被检测到,而H2A在整个胚胎发育过程中持续表达,且水平要高得多。其次,与H2A相反,变体H2A.ZI在发育过程中进行多聚腺苷酸化。第三,原肠胚形成后,H2A.ZI的表达与S期解偶联,而核心组蛋白H2A mRNA的合成则严格受DNA复制的调控。有趣的是,H2A.ZI的N端尾巴带电量较少,而这对染色质介导的抑制作用至关重要。H2A.ZI的这些特征表明,它整合到核小体中会导致在发育过程中形成一种更有利于基因表达的染色质结构。