Origin and evolution of the long non-coding genes in the X-inactivation center

被引:37
作者
Romito, Antonio [1 ]
Rougeulle, Claire [1 ]
机构
[1] Univ Paris Diderot Paris 7, CNRS, UMR Epigenet & Destin Cellulaire 7216, F-75205 Paris, France
关键词
X-inactivation; Xic; Long non-coding RNAs; Pseudogenization; Mobile elements; RECEPTOR RNA ACTIVATOR; EMBRYONIC STEM-CELLS; PROTEIN-CODING GENE; CHROMOSOME INACTIVATION; CHROMATIN-STRUCTURE; TSIX TRANSCRIPTION; CENTER REGION; XIST GENE; TRANSPOSABLE ELEMENTS; DOSAGE COMPENSATION;
D O I
10.1016/j.biochi.2011.07.009
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
Random X chromosome inactivation (XCI), the eutherian mechanism of X-linked gene dosage compensation, is controlled by a cis-acting locus termed the X-inactivation center (Xic). One of the striking features that characterize the Xic landscape is the abundance of loci transcribing non-coding RNAs (ncRNAs), including Xist, the master regulator of the inactivation process. Recent comparative genomic analyses have depicted the evolutionary scenario behind the origin of the X-inactivation center, revealing that this locus evolved from a region harboring protein-coding genes. During mammalian radiation, this ancestral protein-coding region was disrupted in the marsupial group, whilst it provided in eutherian lineage the starting material for the non-translated RNAs of the X-inactivation center. The emergence of non-coding genes occurred by a dual mechanism involving loss of protein-coding function of the pre-existing genes and integration of different classes of mobile elements, some of which modeled the structure and sequence of the non-coding genes in a species-specific manner. The rising genes started to produce transcripts that acquired function in regulating the epigenetic status of the X chromosome, as shown for Xist, its antisense Tsix, Jpx, and recently suggested for FtX. Thus, the appearance of the Xic, which occurred after the divergence between eutherians and marsupials, was the basis for the evolution of random X inactivation as a strategy to achieve dosage compensation. (C) 2011 Published by Elsevier Masson SAS.
引用
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页码:1935 / 1942
页数:8
相关论文
共 71 条
[1]   The delayed rise of present-day mammals [J].
Bininda-Emonds, Olaf R. P. ;
Cardillo, Marcel ;
Jones, Kate E. ;
MacPhee, Ross D. E. ;
Beck, Robin M. D. ;
Grenyer, Richard ;
Price, Samantha A. ;
Vos, Rutger A. ;
Gittleman, John L. ;
Purvis, Andy .
NATURE, 2007, 446 (7135) :507-512
[2]   CHARACTERIZATION OF A MURINE GENE EXPRESSED FROM THE INACTIVE X-CHROMOSOME [J].
BORSANI, G ;
TONLORENZI, R ;
SIMMLER, MC ;
DANDOLO, L ;
ARNAUD, D ;
CAPRA, V ;
GROMPE, M ;
PIZZUTI, A ;
MUZNY, D ;
LAWRENCE, C ;
WILLARD, HF ;
AVNER, P ;
BALLABIO, A .
NATURE, 1991, 351 (6324) :325-329
[3]   Transposable elements in gene regulation and in the evolution of vertebrate genomes [J].
Bourque, Guillaume .
CURRENT OPINION IN GENETICS & DEVELOPMENT, 2009, 19 (06) :607-612
[4]   RNAs from all categories generate retrosequences that may be exapted as novel genes or regulatory elements [J].
Brosius, J .
GENE, 1999, 238 (01) :115-134
[5]   LOCALIZATION OF THE X-INACTIVATION CENTER ON THE HUMAN X-CHROMOSOME IN XQ13 [J].
BROWN, CJ ;
LAFRENIERE, RG ;
POWERS, VE ;
SEBASTIO, G ;
BALLABIO, A ;
PETTIGREW, AL ;
LEDBETTER, DH ;
LEVY, E ;
CRAIG, IW ;
WILLARD, HF .
NATURE, 1991, 349 (6304) :82-84
[6]   A GENE FROM THE REGION OF THE HUMAN X-INACTIVATION CENTER IS EXPRESSED EXCLUSIVELY FROM THE INACTIVE X-CHROMOSOME [J].
BROWN, CJ ;
BALLABIO, A ;
RUPERT, JL ;
LAFRENIERE, RG ;
GROMPE, M ;
TONLORENZI, R ;
WILLARD, HF .
NATURE, 1991, 349 (6304) :38-44
[7]  
Candeias M., 2008, NAT CELL BIOL
[8]  
Cao XW, 2006, ANNU REV NEUROSCI, V29, P77, DOI 10.1146/annurev.neuro.29.051605.112839
[9]   Functional analysis of the highly conserved exon IV of XistRNA [J].
Caparros, ML ;
Alexiou, M ;
Webster, Z ;
Brockdorff, N .
CYTOGENETIC AND GENOME RESEARCH, 2002, 99 (1-4) :99-105
[10]   The transcriptional landscape of the mammalian genome [J].
Carninci, P ;
Kasukawa, T ;
Katayama, S ;
Gough, J ;
Frith, MC ;
Maeda, N ;
Oyama, R ;
Ravasi, T ;
Lenhard, B ;
Wells, C ;
Kodzius, R ;
Shimokawa, K ;
Bajic, VB ;
Brenner, SE ;
Batalov, S ;
Forrest, ARR ;
Zavolan, M ;
Davis, MJ ;
Wilming, LG ;
Aidinis, V ;
Allen, JE ;
Ambesi-Impiombato, X ;
Apweiler, R ;
Aturaliya, RN ;
Bailey, TL ;
Bansal, M ;
Baxter, L ;
Beisel, KW ;
Bersano, T ;
Bono, H ;
Chalk, AM ;
Chiu, KP ;
Choudhary, V ;
Christoffels, A ;
Clutterbuck, DR ;
Crowe, ML ;
Dalla, E ;
Dalrymple, BP ;
de Bono, B ;
Della Gatta, G ;
di Bernardo, D ;
Down, T ;
Engstrom, P ;
Fagiolini, M ;
Faulkner, G ;
Fletcher, CF ;
Fukushima, T ;
Furuno, M ;
Futaki, S ;
Gariboldi, M .
SCIENCE, 2005, 309 (5740) :1559-1563