Guo Q, Lu M, Kallenbach N R
Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.
Biochemistry. 1993 Apr 13;32(14):3596-603. doi: 10.1021/bi00065a010.
DNA from the telomeres at the ends of eukaryotic chromosomes contains a stretch of simple tandemly repeated sequences in which clusters of G residues alternate with clusters of T/A sequences along one DNA strand. Model telomeric G-clusters form four-stranded structures in Na+ or K+, stabilized by Hoogsteen pairing between G bases. DNA containing a single copy of the G-cluster can self-associate to form tetramers, with a parallel-stranded, right-handed helical structure. Two copies of the 3'-terminal G strand form a folded-back hairpin that dimerizes to create an antiparallel quadruplex structure. We show here that the tetrameric structure is strongly influenced by the T residue flanking either side of the G-cluster. The parallel tetraplex formed by single copies of the sequences dTnG4 is most stable for n = 1 and least stable for n = 8, the longest tract we have studied. At least two thymine residues are required to allow formation of antiparallel folded-back hairpin dimers from two-copy oligomers of sequence d(TnG4)2 in Na+; additional T's destabilize this structure. In K+, the predominant structure formed is the four-stranded parallel tetramer in all cases. Kinetic analysis indicates that the quadruplex structure formed by Oxytricha telomeric DNA overhangs in the presence of Na+ arises by dimerization of two Hoogsteen base-paired hairpins, with a relatively low energy barrier.
真核染色体末端端粒的DNA含有一段简单的串联重复序列,其中G残基簇与T/A序列簇沿着一条DNA链交替排列。模型端粒G簇在Na⁺或K⁺中形成四链结构,通过G碱基之间的Hoogsteen配对得以稳定。含有单个G簇拷贝的DNA可以自我缔合形成四聚体,具有平行链的右手螺旋结构。3'末端G链的两个拷贝形成一个回折发夹结构,该结构二聚化形成一个反平行四链体结构。我们在此表明,四聚体结构受到G簇两侧T残基的强烈影响。由序列dTnG4的单拷贝形成的平行四链体在n = 1时最稳定,而在n = 8(我们研究的最长片段)时最不稳定。在Na⁺中,至少需要两个胸腺嘧啶残基才能使序列为d(TnG4)2的双拷贝寡聚物形成反平行回折发夹二聚体;额外的T会使该结构不稳定。在K⁺中,所有情况下形成的主要结构都是四链平行四聚体。动力学分析表明,在Na⁺存在下,嗜热四膜虫端粒DNA突出端形成的四链体结构是由两个Hoogsteen碱基配对的发夹二聚化产生的,能量屏障相对较低。