Remus Dirk, Beall Eileen L, Botchan Michael R
Department of Molecular and Cell Biology, Division of Biochemistry and Molecular Biology, University of California, Berkeley, CA 94720-3204, USA.
EMBO J. 2004 Feb 25;23(4):897-907. doi: 10.1038/sj.emboj.7600077. Epub 2004 Feb 5.
Drosophila origin recognition complex (ORC) localizes to defined positions on chromosomes, and in follicle cells the chorion gene amplification loci are well-studied examples. However, the mechanism of specific localization is not known. We have studied the DNA binding of DmORC to investigate the cis-requirements for DmORC:DNA interaction. DmORC displays at best six-fold differences in the relative affinities to DNA from the third chorion locus and to random fragments in vitro, and chemical probing and DNase1 protection experiments did not identify a discrete binding site for DmORC on any of these fragments. The intrinsic DNA-binding specificity of DmORC is therefore insufficient to target DmORC to origins of replication in vivo. However, the topological state of the DNA significantly influences the affinity of DmORC to DNA. We found that the affinity of DmORC for negatively supercoiled DNA is about 30-fold higher than for either relaxed or linear DNA. These data provide biochemical evidence for the notion that origin specification in metazoa likely involves mechanisms other than simple replicator-initiator interactions and that in vivo other proteins must determine ORC's localization.
果蝇起源识别复合体(ORC)定位于染色体上的特定位置,在卵泡细胞中,绒毛膜基因扩增位点就是经过充分研究的例子。然而,其特异性定位的机制尚不清楚。我们研究了果蝇ORC(DmORC)与DNA的结合,以探究DmORC与DNA相互作用的顺式需求。在体外,DmORC对来自第三个绒毛膜基因座的DNA和随机片段的相对亲和力差异至多为6倍,化学探针和DNase1保护实验未在这些片段中的任何一个上鉴定出DmORC的离散结合位点。因此,DmORC固有的DNA结合特异性不足以在体内将DmORC靶向复制起点。然而,DNA的拓扑状态显著影响DmORC与DNA的亲和力。我们发现,DmORC对负超螺旋DNA的亲和力比对松弛或线性DNA的亲和力高约30倍。这些数据为后生动物中起源指定可能涉及简单复制子 - 起始子相互作用以外的机制这一观点提供了生化证据,并且在体内其他蛋白质必定决定了ORC的定位。