Martínez-Balbás M A, Jiménez-García E, Azorín F
Departament de Biologia Molecular i Cel.lular, Centre d'Investigació i Desenvolupament-CSIC, Barcelona, Spain.
Nucleic Acids Res. 1995 Jul 11;23(13):2464-71. doi: 10.1093/nar/23.13.2464.
It has been known for some time that zinc, as well as most transition metal ions, is capable of binding to the DNA bases. However, little is known about the presence and distribution of metal binding sites along naturally occurring genomic DNA molecules. In this paper, the interaction of zinc with the Xenopus 5S-RNA gene has been studied and several metal binding sites have been identified on the basis of the changes in chemical reactivity observed in the presence of the metal. The strongest zinc-binding sites of the Xenopus 5S-RNA gene correspond to GGG trinucleotide repeats. Some GG dinucleotides also show a significant affinity for zinc. Interestingly, the binding site for TFIIIA, a zinc-finger transcription factor, contains several sites with strong zinc affinity. In particular, a TGGGA sequence which is essential for the binding of TFIIIA shows the strongest affinity for zinc. The conformational properties of this DNA sequence, together with the high electronegative potential of GGG runs, is likely to determine its strong affinity for zinc. The possible biological relevance of these results is discussed.
一段时间以来,人们已经知道锌以及大多数过渡金属离子能够与DNA碱基结合。然而,对于沿着天然存在的基因组DNA分子的金属结合位点的存在和分布却知之甚少。在本文中,研究了锌与非洲爪蟾5S-RNA基因的相互作用,并根据在金属存在下观察到的化学反应性变化确定了几个金属结合位点。非洲爪蟾5S-RNA基因最强的锌结合位点对应于GGG三核苷酸重复序列。一些GG二核苷酸也对锌表现出显著的亲和力。有趣的是,锌指转录因子TFIIIA的结合位点包含几个具有强锌亲和力的位点。特别是,对于TFIIIA结合至关重要的TGGGA序列对锌表现出最强的亲和力。该DNA序列的构象特性,以及GGG序列的高负电势,可能决定了它对锌的强亲和力。讨论了这些结果可能的生物学相关性。