Evolutionary origin and maintenance of coexpressed gene clusters in mammals

被引:103
作者
Semon, Marie [1 ]
Duret, Laurent [1 ]
机构
[1] Univ Lyon 1, CNRS, UMR 5558, Lab Biometrie & Biol Evolut, F-69622 Villeurbanne, France
关键词
cluster; coexpressed genes; chromatin; gene order;
D O I
10.1093/molbev/msl034
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Gene order is not random with regard to gene expression in mammals: coexpressed genes, and in particular housekeeping genes, are clustered along chromosomes more often than expected by chance. To understand the origin of these clusters and to quantify the impact of this phenomenon on genome organization, we analyzed clusters of coexpressed genes in the human and mouse genomes. We show that neighboring genes experience continuous concerted expression changes during evolution, which leads to the formation of coexpressed gene clusters. The pattern of expression within these clusters evolves more slowly than the genomic average. Moreover, by studying gene order evolution, we show that some clusters are maintained by natural selection and, therefore, have a functional significance. However, we also demonstrate that some coexpressed gene clusters are the result of neutral coevolution effects, as illustrated by the clustering of genes escaping inactivation on the X chromosome. Moreover, we show that, although statistically significant, constraints on gene orders have a limited impact on mammalian genome organization, affecting only 3-5% of the pool of human and murine genes. It had been hypothesized that coexpressed gene clusters might correspond to large chromatin domains. In contradiction, we find that most of these clusters contain only 2 genes whose coexpression may be due to transcriptional read-through or the activity of bidirectional promoters.
引用
收藏
页码:1715 / 1723
页数:9
相关论文
共 30 条
[1]   Gapped BLAST and PSI-BLAST: a new generation of protein database search programs [J].
Altschul, SF ;
Madden, TL ;
Schaffer, AA ;
Zhang, JH ;
Zhang, Z ;
Miller, W ;
Lipman, DJ .
NUCLEIC ACIDS RESEARCH, 1997, 25 (17) :3389-3402
[2]   GenBank: update [J].
Benson, DA ;
Karsch-Mizrachi, I ;
Lipman, DJ ;
Ostell, J ;
Wheeler, DL .
NUCLEIC ACIDS RESEARCH, 2004, 32 :D23-D26
[3]   Ensembl 2004 [J].
Birney, E ;
Andrews, D ;
Bevan, P ;
Caccamo, M ;
Cameron, G ;
Chen, Y ;
Clarke, L ;
Coates, G ;
Cox, T ;
Cuff, J ;
Curwen, V ;
Cutts, T ;
Down, T ;
Durbin, R ;
Eyras, E ;
Fernandez-Suarez, XM ;
Gane, P ;
Gibbins, B ;
Gilbert, J ;
Hammond, M ;
Hotz, H ;
Iyer, V ;
Kahari, A ;
Jekosch, K ;
Kasprzyk, A ;
Keefe, D ;
Keenan, S ;
Lehvaslaiho, H ;
McVicker, G ;
Melsopp, C ;
Meidl, P ;
Mongin, E ;
Pettett, R ;
Potter, S ;
Proctor, G ;
Rae, M ;
Searle, S ;
Slater, G ;
Smedley, D ;
Smith, J ;
Spooner, W ;
Stabenau, A ;
Stalker, J ;
Storey, R ;
Ureta-Vidal, A ;
Woodwark, C ;
Clamp, M ;
Hubbard, T .
NUCLEIC ACIDS RESEARCH, 2004, 32 :D468-D470
[4]   The human transcriptome map:: Clustering of highly expressed genes in chromosomal domains [J].
Caron, H ;
van Schaik, B ;
van der Mee, M ;
Baas, F ;
Riggins, G ;
van Sluis, P ;
Hermus, MC ;
van Asperen, R ;
Boon, K ;
Voûte, PA ;
Heisterkamp, S ;
van Kampen, A ;
Versteeg, R .
SCIENCE, 2001, 291 (5507) :1289-+
[5]   X-inactivation profile reveals extensive variability in X-linked gene expression in females [J].
Carrel, L ;
Willard, HF .
NATURE, 2005, 434 (7031) :400-404
[6]   Sex chromosomes: Evolving dosage compensation [J].
Charlesworth, B .
CURRENT BIOLOGY, 1998, 8 (25) :R931-R933
[7]   Tree pattern matching in phylogenetic trees:: automatic search for orthologs or paralogs in homologous gene sequence databases [J].
Dufayard, JF ;
Duret, L ;
Penel, S ;
Gouy, M ;
Rechenmann, F ;
Perrière, G .
BIOINFORMATICS, 2005, 21 (11) :2596-2603
[8]   Gene Expression Omnibus: NCBI gene expression and hybridization array data repository [J].
Edgar, R ;
Domrachev, M ;
Lash, AE .
NUCLEIC ACIDS RESEARCH, 2002, 30 (01) :207-210
[9]   Sequence and comparative analysis of the chicken genome provide unique perspectives on vertebrate evolution [J].
Hillier, LW ;
Miller, W ;
Birney, E ;
Warren, W ;
Hardison, RC ;
Ponting, CP ;
Bork, P ;
Burt, DW ;
Groenen, MAM ;
Delany, ME ;
Dodgson, JB ;
Chinwalla, AT ;
Cliften, PF ;
Clifton, SW ;
Delehaunty, KD ;
Fronick, C ;
Fulton, RS ;
Graves, TA ;
Kremitzki, C ;
Layman, D ;
Magrini, V ;
McPherson, JD ;
Miner, TL ;
Minx, P ;
Nash, WE ;
Nhan, MN ;
Nelson, JO ;
Oddy, LG ;
Pohl, CS ;
Randall-Maher, J ;
Smith, SM ;
Wallis, JW ;
Yang, SP ;
Romanov, MN ;
Rondelli, CM ;
Paton, B ;
Smith, J ;
Morrice, D ;
Daniels, L ;
Tempest, HG ;
Robertson, L ;
Masabanda, JS ;
Griffin, DK ;
Vignal, A ;
Fillon, V ;
Jacobbson, L ;
Kerje, S ;
Andersson, L ;
Crooijmans, RPM ;
Aerts, J .
NATURE, 2004, 432 (7018) :695-716
[10]   The evolutionary dynamics of eukaryotic gene order [J].
Hurst, LD ;
Pál, C ;
Lercher, MJ .
NATURE REVIEWS GENETICS, 2004, 5 (04) :299-310