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Cooperative Binding of Single-Stranded Telomeric DNA by the Pot1 Protein of Schizosaccharomyces pombe

机译:粟酒裂殖酵母Pot1蛋白对单链端粒DNA的合作结合。

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The fission yeast Pot1 (protection of telomeres) protein is a single-stranded telomeric DNA-binding protein and is required to protect the ends of chromosomes. Its N-terminal DNA-binding domain, Pot1pN, shows sequence similarity to the first OB fold of the telomere-binding protein alpha subunit of Oxytricha nova. The minimal-length telomeric ssDNA required to bind Pot1pN was determined to consist of six nucleotides, GGTTAC, by gel filtration chromatography and filter-binding assay (K_D=83 nM). Pot1pN is a monomer, and each monomer binds one hexaucleotide. Experiments with nucleotide substitutions demonstrated that the central four nucleotides are crucial for binding. The dependence of Pot1pN-ssDNA binding on salt concentration was consistent with a single ionic contact between the protein and the ssDNA phosphate backbone, such that at physiological salt condition 83% of the free energy of binding is nonelectrostatic Subsequent binding experiments with longer ssDNAs indicated that Pot1pN binds to telomeric ssDNA with 3' end preference and in a highly cooperative manner that mainly results from DNA-induced protein-protein interactions. Together, the binding properties of Pot1pN suggest that the protein anchors itself at the very 3' end of a chromosome and then fills in very efficiently, coating the entire single-stranded overhang of the telomere.
机译:裂变酵母Pot1(端粒保护)蛋白是单链端粒DNA结合蛋白,是保护染色体末端所必需的。它的N端DNA结合结构域Pot1pN显示与Oxytricha nova端粒结合蛋白α亚基的第一个OB折叠相似的序列。通过凝胶过滤色谱和滤膜结合测定法(K_D = 83 nM),确定结合Pot1pN所需的最小长度端粒ssDNA由六个核苷酸GGTTAC组成。 Pot1pN是单体,每个单体结合一个六核苷酸。核苷酸取代的实验表明,中央的四个核苷酸对于结合至关重要。 Pot1pN-ssDNA结合对盐浓度的依赖性与蛋白质和ssDNA磷酸骨架之间的单个离子接触相一致,因此在生理盐条件下,83%的结合自由能是非静电的。随后对更长的ssDNA进行结合实验表明: Pot1pN与端粒ssDNA的结合具有3'末端优先级,并以高度协作的方式结合,这主要是由DNA诱导的蛋白质-蛋白质相互作用产生的。总之,Pot1pN的结合特性表明该蛋白将自身锚定在染色体的3'端,然后非常有效地填充,从而覆盖了端粒的整个单链突出端。

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