Chambeyron Séverine, Bickmore Wendy A
MRC Human Genetics Unit, Edinburgh EH4 2XU, United Kingdom.
Genes Dev. 2004 May 15;18(10):1119-30. doi: 10.1101/gad.292104.
The colinearity of genes in Hox clusters suggests a role for chromosome structure in gene regulation. We reveal programmed changes in chromatin structure and nuclear organization upon induction of Hoxb expression by retinoic acid. There is an early increase in the histone modifications that are marks of active chromatin at both the early expressed gene Hoxb1, and also at Hoxb9 that is not expressed until much later. There is also a visible decondensation of the chromatin between Hoxb1 and Hoxb9 at this early stage. However, a further change in higher-order chromatin structure, looping out of genes from the chromosome territory, occurs in synchrony with the execution of the gene expression program. We suggest that higher-order chromatin structure regulates the expression of the HoxB cluster at several levels. Locus-wide changes in chromatin structure (histone modification and chromatin decondensation) may establish a transcriptionally poised state but are not sufficient for the temporal program of gene expression. The choreographed looping out of decondensed chromatin from chromosome territories may then allow for activation of high levels of transcription from the sequence of genes along the cluster.
Hox基因簇中基因的共线性表明染色体结构在基因调控中发挥作用。我们发现,视黄酸诱导Hoxb基因表达时,染色质结构和核组织会发生程序性变化。在早期表达的基因Hoxb1以及直到很久以后才表达的Hoxb9上,组蛋白修饰都有早期增加,而这些修饰是活跃染色质的标志。在此早期阶段,Hoxb1和Hoxb9之间的染色质也出现了明显的解聚。然而,更高层次的染色质结构的进一步变化,即基因从染色体区域环出,与基因表达程序的执行同步发生。我们认为,更高层次的染色质结构在多个水平上调节HoxB基因簇的表达。染色质结构的全位点变化(组蛋白修饰和染色质解聚)可能建立一种转录就绪状态,但不足以实现基因表达的时间程序。然后,从染色体区域精心编排的解聚染色质环出可能允许从沿着基因簇的基因序列激活高水平的转录。