Moens P B
Department of Biology, York University, Downsview, Ontario, M3J 1P3, Canada.
Chromosoma. 1995 Nov;104(3):169-74. doi: 10.1007/BF00352181.
The chromatin conformation of somatic and meiotic chromosomes is, at least in part, a function of electrostatic nucleosome interactions that are mediated by transient acetylation of the histone H4 N-terminal domain and phosphorylation of histone H1. The distribution of those histones in the chromatin of meiotic chromosomes is reported here. Antibodies to testis-specific histone 1, H1t, detect H1t in the chromatin of mouse meiotic prophase chromosomes only after synapsis and synaptonemal complex (SC) assembly is completed and before core separation is initiated. The H1t protein is evenly distributed over euchromatin, heterochromatin and the SC. Antibodies to acetylated lysine residues 5, 12 or 16 of histone H4, indicate that the euchromatin is more acetylated than the centromeric heterochromatin. The pattern is most pronounced for acetylated residue 5 and least for 16. Antibodies to phosphorylated H1 epitopes do not react with chromatin but, instead, recognize the chromosome cores and SCs. Possibly these are not phosphorylated histone H1 epitopes, but SC proteins with similar potentially phosphorylatable sequences such as KTPTK of the synaptic protein Syn1.
体细胞和减数分裂染色体的染色质构象至少部分是由静电核小体相互作用决定的,这种相互作用由组蛋白H4 N端结构域的瞬时乙酰化和组蛋白H1的磷酸化介导。本文报道了这些组蛋白在减数分裂染色体染色质中的分布情况。针对睾丸特异性组蛋白1(H1t)的抗体,仅在联会和联会复合体(SC)组装完成后、核心分离开始前,才能在小鼠减数分裂前期染色体的染色质中检测到H1t。H1t蛋白均匀分布于常染色质、异染色质和SC上。针对组蛋白H4乙酰化赖氨酸残基5、12或16的抗体表明,常染色质的乙酰化程度高于着丝粒异染色质。这种模式在乙酰化残基5处最为明显,在16处最不明显。针对磷酸化H1表位的抗体不与染色质反应,而是识别染色体核心和SC。这些可能不是磷酸化的组蛋白H1表位,而是具有类似潜在可磷酸化序列的SC蛋白,如突触蛋白Syn1的KTPTK。