Heard Edith, Bickmore Wendy
CNRS UMR 218, Curie Institute, 75248 Paris Cedex 05, France.
Curr Opin Cell Biol. 2007 Jun;19(3):311-6. doi: 10.1016/j.ceb.2007.04.016. Epub 2007 Apr 30.
The establishment and maintenance of differential patterns of gene expression lie at the heart of development. How the precision of developmental gene regulation is achieved, despite the highly repetitive and complex nature of the mammalian genome, remains an important question. It is becoming increasingly clear that genetic regulation must be considered not only in the context of short- and long-range regulatory sequences and local chromatin structure, but also at the level of position within the nucleus. Recent studies have addressed the extent to which the location of a gene relative to its interphase chromosome territory affects its regulation or its capacity to be expressed. Two model systems have emphasized the role of this level of nuclear organization during development. Hox gene clusters have provided important insights into the dynamic repositioning of a locus relative to its chromosome territory during spatial and temporal patterning of gene expression. The inactive X chromosome has also become a useful paradigm for studying the differential chromatin status and chromosomal organization of the two X's within the same nucleus. Recent work suggests that chromosome territory reorganisation can be an important step in the gene silencing process.
基因表达差异模式的建立和维持是发育的核心。尽管哺乳动物基因组具有高度重复性和复杂性,但如何实现发育基因调控的精确性仍是一个重要问题。越来越清楚的是,遗传调控不仅必须在短程和长程调控序列以及局部染色质结构的背景下考虑,还必须在细胞核内的位置水平上考虑。最近的研究探讨了基因相对于其间期染色体区域的位置在多大程度上影响其调控或表达能力。两个模型系统强调了这种核组织水平在发育过程中的作用。Hox基因簇为基因表达的时空模式形成过程中一个基因座相对于其染色体区域的动态重新定位提供了重要见解。失活的X染色体也已成为研究同一细胞核内两条X染色体的染色质状态差异和染色体组织的有用范例。最近的研究表明,染色体区域重组可能是基因沉默过程中的一个重要步骤。