The distribution of inverted repeat sequences in the Saccharomyces cerevisiae genome

被引:0
作者
Eva M. Strawbridge
Gary Benson
Yevgeniy Gelfand
Craig J. Benham
机构
[1] University of Chicago,Department of Mathematics
[2] Boston University,Laboratory for Biocomputing and Informatics
[3] University of California,Department of Mathematics
来源
Current Genetics | 2010年 / 56卷
关键词
Palindromes; Imperfect inverted repeats; Hairpins; Yeast;
D O I
暂无
中图分类号
学科分类号
摘要
Although a variety of possible functions have been proposed for inverted repeat sequences (IRs), it is not known which of them might occur in vivo. We investigate this question by assessing the distributions and properties of IRs in the Saccharomyces cerevisiae (SC) genome. Using the IRFinder algorithm we detect 100,514 IRs having copy length greater than 6 bp and spacer length less than 77 bp. To assess statistical significance we also determine the IR distributions in two types of randomization of the S. cerevisiae genome. We find that the S. cerevisiae genome is significantly enriched in IRs relative to random. The S. cerevisiae IRs are significantly longer and contain fewer imperfections than those from the randomized genomes, suggesting that processes to lengthen and/or correct errors in IRs may be operative in vivo. The S. cerevisiae IRs are highly clustered in intergenic regions, while their occurrence in coding sequences is consistent with random. Clustering is stronger in the 3′ flanks of genes than in their 5′ flanks. However, the S. cerevisiae genome is not enriched in those IRs that would extrude cruciforms, suggesting that this is not a common event. Various explanations for these results are considered.
引用
收藏
页码:321 / 340
页数:19
相关论文
共 246 条
  • [1] Achaz G(2003)Associations between inverted repeats and the structural evolution of bacterial genomes Genetics 164 1279-1289
  • [2] Coissac E(2000)Analysis of intrachromosomal duplications in yeast Mol Biol Evol 17 1268-1275
  • [3] Netter P(1997): a possible model for their origin Mol Cell Biol 17 5559-5570
  • [4] Rocha EPC(2002)Palindrome resolution and recombination in the mammalian germ line J Cell Biochem 87 194-207
  • [5] Achez G(1993)14-3-3 sigma is a cruciform DNA binding protein and associates in vivo with origins of DNA replication J Mol Biol 234 1184-1196
  • [6] Coissac E(1982)The free energy, enthalpy and entropy of native and of partially denatured closed circular DNA Biopolymers 21 679-696
  • [7] Viari A(2002)Stable cruciform formation at inverted repeat sequence in supercoiled DNA J Mol Biol 316 563-581
  • [8] Netter P(1996)Extrusion of an imperfect palindrome to a cruciform in superhelical DNA: complete determination of energetics using a statistical mechanical model Proc Nat Acad Sci USA 93 819-823
  • [9] Akgun E(1996)DNA rearrangement mediated by inverted repeats Cell 87 1115-1122
  • [10] Zahn J(2002)Induction of large DNA palindrome formation in yeast: Implications for gene amplification and genome stability in eukaryotes Genetics 161 1065-1075