Literature DB >> 16024824

A functional survey of the enhancer activity of conserved non-coding sequences from vertebrate Iroquois cluster gene deserts.

Elisa de la Calle-Mustienes1, Cármen Gloria Feijóo, Miguel Manzanares, Juan J Tena, Elisa Rodríguez-Seguel, Annalisa Letizia, Miguel L Allende, José Luis Gómez-Skarmeta.   

Abstract

Recent studies of the genome architecture of vertebrates have uncovered two unforeseen aspects of its organization. First, large regions of the genome, called gene deserts, are devoid of protein-coding sequences and have no obvious biological role. Second, comparative genomics has highlighted the existence of an array of highly conserved non-coding regions (HCNRs) in all vertebrates. Most surprisingly, these structural features are strongly associated with genes that have essential functions during development. Among these, the vertebrate Iroquois (Irx) genes stand out on both fronts. Mammalian Irx genes are organized in two clusters (IrxA and IrxB) that span >1 Mb each with no other genes interspersed. Additionally, a large number of HCNRs exist within Irx clusters. We have systematically examined the enhancer activity of HCNRs from the IrxB cluster using transgenic Xenopus and zebrafish embryos. Most of these HCNRs are active in subdomains of endogenous Irx expression, and some are candidates to contain shared enhancers of neighboring genes, which could explain the evolutionary conservation of Irx clusters. Furthermore, HCNRs present in tetrapod IrxB but not in fish may be responsible for novel Irx expression domains that appeared after their divergence. Finally, we have performed a more detailed analysis on two IrxB ultraconserved non-coding regions (UCRs) duplicated in IrxA clusters in similar relative positions. These four regions share a core region highly conserved among all of them and drive expression in similar domains. However, inter-species conserved sequences surrounding the core, specific for each of these UCRs, are able to modulate their expression.

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Year:  2005        PMID: 16024824      PMCID: PMC1182218          DOI: 10.1101/gr.4004805

Source DB:  PubMed          Journal:  Genome Res        ISSN: 1088-9051            Impact factor:   9.043


  40 in total

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2.  Functional analysis of chicken Sox2 enhancers highlights an array of diverse regulatory elements that are conserved in mammals.

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3.  Evolutionary conservation of regulatory elements in vertebrate Hox gene clusters.

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Review 4.  Cross-species sequence comparisons: a review of methods and available resources.

Authors:  Kelly A Frazer; Laura Elnitski; Deanna M Church; Inna Dubchak; Ross C Hardison
Journal:  Genome Res       Date:  2003-01       Impact factor: 9.043

Review 5.  The role of gene duplication in the evolution and function of the vertebrate Dlx/distal-less bigene clusters.

Authors:  Kenta Sumiyama; Steven Q Irvine; Frank H Ruddle
Journal:  J Struct Funct Genomics       Date:  2003

Review 6.  Half a century of neural prepatterning: the story of a few bristles and many genes.

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Review 8.  Iroquois genes: genomic organization and function in vertebrate neural development.

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Journal:  Curr Opin Genet Dev       Date:  2002-08       Impact factor: 5.578

9.  Comparative genomics of the SOX9 region in human and Fugu rubripes: conservation of short regulatory sequence elements within large intergenic regions.

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Journal:  Genomics       Date:  2001-11       Impact factor: 5.736

10.  A global control region defines a chromosomal regulatory landscape containing the HoxD cluster.

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Journal:  Cell       Date:  2003-05-02       Impact factor: 41.582

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  91 in total

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2.  An ancient genomic regulatory block conserved across bilaterians and its dismantling in tetrapods by retrogene replacement.

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3.  ChIP-Seq identification of weakly conserved heart enhancers.

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5.  Ultraconservation identifies a small subset of extremely constrained developmental enhancers.

Authors:  Axel Visel; Shyam Prabhakar; Jennifer A Akiyama; Malak Shoukry; Keith D Lewis; Amy Holt; Ingrid Plajzer-Frick; Veena Afzal; Edward M Rubin; Len A Pennacchio
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6.  Metrics of sequence constraint overlook regulatory sequences in an exhaustive analysis at phox2b.

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7.  Several cis-regulatory elements control mRNA stability, translation efficiency, and expression pattern of Prrxl1 (paired related homeobox protein-like 1).

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8.  Enhancer turnover and conserved regulatory function in vertebrate evolution.

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9.  The prepattern transcription factor Irx3 directs nephron segment identity.

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Journal:  Genes Dev       Date:  2007-09-15       Impact factor: 11.361

10.  Genomic regulatory blocks underlie extensive microsynteny conservation in insects.

Authors:  Pär G Engström; Shannan J Ho Sui; Oyvind Drivenes; Thomas S Becker; Boris Lenhard
Journal:  Genome Res       Date:  2007-11-07       Impact factor: 9.043

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