Xiao Yi, Huang Yanzhao, Li Mingfeng, Xu Ruizhen, Xiao Saifeng
Department of Physics, Huazhong University of Science and Technology, Wuhan 430074, People's Republic of China.
Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Dec;68(6 Pt 1):061913. doi: 10.1103/PhysRevE.68.061913. Epub 2003 Dec 24.
We report on a nonlinear analysis of deterministic structures in Alu repeats, one of the richest repetitive DNA sequences in the human genome. Alu repeats contain the recognition sites for the restriction endonuclease AluI, which is what gives them their name. Using the nonlinear prediction method developed in chaos theory, we find that all Alu repeats have novel deterministic structures and show strong nonlinear correlations that are absent from exon and intron sequences. Furthermore, the deterministic structures of Alus of younger subfamilies show panlike shapes. As young Alus can be seen as mutation free copies from the "master genes," it may be suggested that the deterministic structures of the older subfamilies are results of an evolution from a "panlike" structure to a more diffuse correlation pattern due to mutation.
我们报告了对人类基因组中最丰富的重复DNA序列之一——Alu重复序列中确定性结构的非线性分析。Alu重复序列包含限制性内切酶AluI的识别位点,这也是它们得名的原因。使用混沌理论中开发的非线性预测方法,我们发现所有Alu重复序列都具有新颖的确定性结构,并显示出外显子和内含子序列中不存在的强非线性相关性。此外,较年轻亚家族的Alu的确定性结构呈现出平底锅状。由于年轻的Alu可以被视为“主基因”的无突变拷贝,因此可以推测,较古老亚家族的确定性结构是由于突变从“平底锅状”结构演变为更分散的相关模式的结果。