Dorsett Dale, Eissenberg Joel C, Misulovin Ziva, Martens Andrew, Redding Bethany, McKim Kim
Edward A. Doisy Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, Saint Louis, MO 63104, USA.
Development. 2005 Nov;132(21):4743-53. doi: 10.1242/dev.02064. Epub 2005 Oct 5.
The cohesin protein complex is a conserved structural component of chromosomes. Cohesin binds numerous sites along interphase chromosomes and is essential for sister chromatid cohesion and DNA repair. Here, we test the idea that cohesin also regulates gene expression. This idea arose from the finding that the Drosophila Nipped-B protein, a functional homolog of the yeast Scc2 factor that loads cohesin onto chromosomes, facilitates the transcriptional activation of certain genes by enhancers located many kilobases away from their promoters. We find that cohesin binds between a remote wing margin enhancer and the promoter at the cut locus in cultured cells, and that reducing the dosage of the Smc1 cohesin subunit increases cut expression in the developing wing margin. We also find that cut expression is increased by a unique pds5 gene mutation that reduces the binding of cohesin to chromosomes. On the basis of these results, we posit that cohesin inhibits long-range activation of the Drosophila cut gene, and that Nipped-B facilitates activation by regulating cohesin-chromosome binding. Such effects of cohesin on gene expression could be responsible for many of the developmental deficits that occur in Cornelia de Lange syndrome, which is caused by mutations in the human homolog of Nipped-B.
黏连蛋白复合体是染色体保守的结构组成部分。黏连蛋白沿着间期染色体结合众多位点,对于姐妹染色单体黏连和DNA修复至关重要。在此,我们测试黏连蛋白也调控基因表达这一观点。该观点源于以下发现:果蝇Nipped - B蛋白是将黏连蛋白加载到染色体上的酵母Scc2因子的功能同源物,它能促进某些基因被位于距其启动子数千碱基处的增强子转录激活。我们发现黏连蛋白在培养细胞中位于翅缘远端增强子与cut基因座的启动子之间结合,并且降低Smc1黏连蛋白亚基的剂量会增加发育中的翅缘处cut基因的表达。我们还发现,一种独特的pds5基因突变会增加cut基因的表达,该突变会减少黏连蛋白与染色体的结合。基于这些结果,我们推测黏连蛋白抑制果蝇cut基因的远程激活,并且Nipped - B通过调节黏连蛋白与染色体的结合来促进激活。黏连蛋白对基因表达的这种作用可能是科妮莉亚·德朗热综合征中出现的许多发育缺陷的原因,该综合征由Nipped - B人类同源物的突变引起。