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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Conformational Diversity of Single-Stranded DNA from Bacterial Repetitive Extragenic Palindromes: Implications for the DNA Recognition Elements of Transposases
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Conformational Diversity of Single-Stranded DNA from Bacterial Repetitive Extragenic Palindromes: Implications for the DNA Recognition Elements of Transposases

机译:细菌重复性外基因回文的单链DNA的构象多样性:转座酶的DNA识别元件的含义。

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摘要

Repetitive extragenic palindrome (REP)associated tyrosine transposase enzymes (RAYTs) bind REP DNA domains and catalyze their cleavage. Genomic sequence analyses identify potential noncoding REP sequences associated with RAYT-encoding genes. To probe the conformational space of potential RAYT DNA binding domains, we report here spectroscopic and calorimetric measurements that detect and partially characterize the solution conformational heterogeneity of REP oligonucleotides from six bacterial species. Our data reveal most of these REP oligonucleotides adopt multiple conformations, suggesting that RAYTs confront a landscape of potential DNA substrates in dynamic equilibrium that could be selected, enriched, and/or induced via differential binding. Thus, the transposase-bound DNA motif may not be the predominant conformation of the isolated REP domain. Intriguingly, for several REPs, the circular dichroism spectra suggest guanine tetraplexes as potential alternative or additional RAYT recognition elements, an observation consistent with these REP domains being highly nonrandom, with tetraplex-favoring 5-G and 3-C-rich segments. In fact, the conformational heterogeneity of REP domains detected and reported here, including the formation of noncanonical DNA secondary structures, may reflect a general feature required for recognition by RAYT transposases. Based on our biophysical data, we propose guanine tetraplexes as an additional DNA recognition element for binding by RAYT transposase enzymes. (c) 2015 Wiley Periodicals, Inc.
机译:重复的基因外回文(REP)相关的酪氨酸转座酶(RAYT)结合REP DNA结构域并催化其切割。基因组序列分析可识别与RAYT编码基因相关的潜在非编码REP序列。为了探测潜在的RAYT DNA结合结构域的构象空间,我们在这里报告了光谱和量热测量,可以检测和部分表征来自六个细菌物种的REP寡核苷酸的溶液构象异质性。我们的数据显示,大多数这些REP寡核苷酸采用多种构象,这表明RAYT在动态平衡中面临着潜在DNA底物的格局,这些底物可以通过差异结合进行选择,富集和/或诱导。因此,转座酶结合的DNA基序可能不是分离的REP域的主要构象。有趣的是,对于几个REP,圆二色性光谱表明鸟嘌呤四重体是潜在的替代或其他RAYT识别元件,与这些REP结构域一致的观察结果是高度无规的,具有促进四重体的5-G和3-C富集链段。实际上,此处检测和报告的REP域的构象异质性,包括非典型DNA二级结构的形成,可能反映了RAYT转座酶识别所需的一般特征。根据我们的生物物理数据,我们建议将鸟嘌呤四重体作为附加的DNA识别元件,以通过RAYT转座酶进行结合。 (c)2015年威利期刊有限公司

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