Gorgoshidze M Z, Miniat E E, Gorin A A, Demchuk E Ia, Farutin V A, Ivanov V I
Mol Biol (Mosk). 1992 Nov-Dec;26(6):1263-73.
Short tandem repeats (5-8 base pairs) are not uncommon in the prokaryotic and eukaryotic DNA. Regions with such sequence motifs, when under superhelical stress, manifest unusual sensitivity to single-strand specific nuclease. To explain this, it has been suggested that one DNA thread should be shifted relatively to another, so that they could form two single-stranded loops protruding from the opposite chains and separated on the DNA helix by the length of a direct repeat. The structure was proposed to play a role in the regulation of transcription, organization of chromatin and in the recombination. Such type of folding could have been extra-stabilized by base pairing between the loops. This attractive possibility of the interloop minihelix formation requires a delicate stereochemical analysis and direct experimental support. Formation of the interloop minihelix in the Slipped Loop Structure (SLS) was tested by a chemical modification method at one nucleotide level resolution. The results show that bases located within the proposed interloop helix are well protected from the probes used. This fact encourages us to publish a 3-D model for the SLS-form DNA (and RNA). The SLS is characterized by a remarkable symmetry having three mutually perpendicular dyad axes. Scanning the bank of nucleotide sequences has revealed more than 500 sites, the transcripts of which are capable of folding into the SLS form, which allow us to regard the SLS form as a novel universal structural form. Remarkably, the abundance of SLS in intrones three times exceeds that of the coding sequences. This may reflect a functional role (or roles) of the SLS conformation.
短串联重复序列(5 - 8个碱基对)在原核生物和真核生物的DNA中并不罕见。具有这种序列基序的区域,在超螺旋应力作用下,对单链特异性核酸酶表现出异常的敏感性。为了解释这一现象,有人提出一条DNA链应相对于另一条链发生移位,这样它们就能形成两个从相反链突出的单链环,并在DNA螺旋上被一个正向重复序列的长度隔开。有人认为这种结构在转录调控、染色质组织和重组中发挥作用。这种类型的折叠可能通过环之间的碱基配对而得到额外稳定。这种环间小螺旋形成的诱人可能性需要精细的立体化学分析和直接的实验支持。通过化学修饰方法在一个核苷酸水平分辨率下测试了滑动环结构(SLS)中环间小螺旋的形成。结果表明,位于所提出的环间螺旋内的碱基受到所用探针的良好保护。这一事实促使我们发表一种SLS形式的DNA(和RNA)的三维模型。SLS的特征是具有显著的对称性,有三个相互垂直的二分对称轴。对核苷酸序列库的扫描揭示了500多个位点,其转录本能够折叠成SLS形式,这使我们能够将SLS形式视为一种新型的通用结构形式。值得注意的是,内含子中SLS的丰度比编码序列高三倍。这可能反映了SLS构象的一种(或多种)功能作用。