Konig P, Giraldo R, Chapman L, Rhodes D
Medical Research Council, Laboratory of Molecular Biology, Cambridge, United Kingdom.
Cell. 1996 Apr 5;85(1):125-36. doi: 10.1016/s0092-8674(00)81088-0.
Telomeres, the nucleoprotein complexes at the ends of eukaryotic chromosomes, are essential for chromosome stability. In the yeast S. cerevisiae, telomeric DNA is bound in a sequence-specific manner by RAP1, a multifunctional protein also involved in transcriptional regulation. Here we report the crystal structure of the DNA-binding domain of RAP1 in complex with telomeric DNA site at 2.25 A resolution. The protein contains two similar domains that bind DNA in a tandem orientation, recognizing a tandemly repeated DNA sequence. The domains are structurally related to the homeodomain and the proto-oncogene Myb, but show novel features in their DNA-binding mode. A structured linker between the domains and a long C-terminal tail contribute to the binding specificity. This structure provides insight into the recognition of the conserved telomeric DNA sequences by a protein.
端粒是真核染色体末端的核蛋白复合体,对染色体稳定性至关重要。在酿酒酵母中,端粒DNA以序列特异性方式与RAP1结合,RAP1是一种多功能蛋白,也参与转录调控。本文我们报道了RAP1的DNA结合结构域与端粒DNA位点复合物的晶体结构,分辨率为2.25埃。该蛋白包含两个相似的结构域,它们以串联方向结合DNA,识别串联重复的DNA序列。这些结构域在结构上与同源结构域和原癌基因Myb相关,但在DNA结合模式上呈现出新的特征。结构域之间的结构化连接子和长的C末端尾巴有助于结合特异性。该结构为蛋白质对保守端粒DNA序列的识别提供了深入了解。