Lee J T, Lu N, Han Y
Department of Molecular Biology, Massachusetts General Hospital, Boston, MA 02114, USA.
Proc Natl Acad Sci U S A. 1999 Mar 30;96(7):3836-41. doi: 10.1073/pnas.96.7.3836.
Dosage compensation in mammals occurs by X inactivation, a silencing mechanism regulated in cis by the X inactivation center (Xic). In response to developmental cues, the Xic orchestrates events of X inactivation, including chromosome counting and choice, initiation, spread, and establishment of silencing. It remains unclear what elements make up the Xic. We previously showed that the Xic is contained within a 450-kb sequence that includes Xist, an RNA-encoding gene required for X inactivation. To characterize the Xic further, we performed deletional analysis across the 450-kb region by yeast-artificial-chromosome fragmentation and phage P1 cloning. We tested Xic deletions for cis inactivation potential by using a transgene (Tg)-based approach and found that an 80-kb subregion also enacted somatic X inactivation on autosomes. Xist RNA coated the autosome but skipped the Xic Tg, raising the possibility that X chromosome domains escape inactivation by excluding Xist RNA binding. The autosomes became late-replicating and hypoacetylated on histone H4. A deletion of the Xist 5' sequence resulted in the loss of somatic X inactivation without abolishing Xist expression in undifferentiated cells. Thus, Xist expression in undifferentiated cells can be separated genetically from somatic silencing. Analysis of multiple Xic constructs and insertion sites indicated that long-range Xic effects can be generalized to different autosomes, thereby supporting the feasibility of a Tg-based approach for studying X inactivation.
哺乳动物中的剂量补偿通过X染色体失活来实现,这是一种由X染色体失活中心(Xic)顺式调控的沉默机制。响应发育信号,Xic协调X染色体失活的一系列事件,包括染色体计数与选择、起始、扩展以及沉默的建立。目前尚不清楚构成Xic的元件有哪些。我们之前表明,Xic包含在一个450 kb的序列中,该序列包括Xist,这是一个X染色体失活所需的RNA编码基因。为了进一步表征Xic,我们通过酵母人工染色体片段化和噬菌体P1克隆对450 kb区域进行了缺失分析。我们使用基于转基因(Tg)的方法测试了Xic缺失的顺式失活潜力,发现一个80 kb的子区域也能在常染色体上引发体细胞X染色体失活。Xist RNA覆盖了常染色体,但跳过了Xic Tg,这增加了X染色体区域通过排除Xist RNA结合而逃避失活的可能性。常染色体在组蛋白H4上复制延迟且低乙酰化。Xist 5'序列的缺失导致体细胞X染色体失活丧失,但未消除未分化细胞中Xist的表达。因此,未分化细胞中Xist的表达在遗传上可与体细胞沉默分离。对多个Xic构建体和插入位点的分析表明,Xic的远距离效应可推广到不同的常染色体,从而支持了基于Tg的方法用于研究X染色体失活的可行性。