Functional dissection of the ash2 and ash1 transcriptomes provides insights into the transcriptional basis of wing phenotypes and reveals conserved protein interactions

Author

Beltran i Agulló, Sergi

Angulo i Parera, Mireia

Pignatelli, Miguel

Serras Rigalt, Florenci

Corominas, Montserrat (Corominas Guiu)

Publication date

2009-03-31T08:10:07Z

2009-03-31T08:10:07Z

2007

Abstract

Background: The trithorax group (trxG) genes absent, small or homeotic discs 1 (ash1) and 2 (ash2) were isolated in a screen for mutants with abnormal imaginal discs. Mutations in either gene cause homeotic transformations but Hox genes are not their only targets. Although analysis of double mutants revealed that ash2 and ash1 mutations enhance each other's phenotypes, suggesting they are functionally related, it was shown that these proteins are subunits of distinct complexes. Results: The analysis of wing imaginal disc transcriptomes from ash2 and ash1 mutants showed that they are highly similar. Functional annotation of regulated genes using Gene Ontology allowed identification of severely affected groups of genes that could be correlated to the wing phenotypes observed. Comparison of the differentially expressed genes with those from other genome-wide analyses revealed similarities between ASH2 and Sin3A, suggesting a putative functional relationship. Coimmunoprecipitation studies and immunolocalization on polytene chromosomes demonstrated that ASH2 and Sin3A interact with HCF (host-cell factor). The results of nucleosome western blots and clonal analysis indicated that ASH2 is necessary for trimethylation of the Lys4 on histone 3 (H3K4). Conclusion: The similarity between the transcriptomes of ash2 and ash1 mutants supports a model in which the two genes act together to maintain stable states of transcription. Like in humans, both ASH2 and Sin3A bind HCF. Finally, the reduction of H3K4 trimethylation in ash2 mutants is the first evidence in Drosophila regarding the molecular function of this trxG gene.

Document Type

Article
Published version

Language

English

Subjects and keywords

Drosòfila; Expressió gènica; Transcripció genètica; Genetics; Development

Publisher

BioMed Central

Related items

Reproducció del document publicat a http://dx.doi.org/10.1186/gb-2007-8-4-r67

Genome Biology, 2007, vol. 8, núm. 67

http://dx.doi.org/10.1186/gb-2007-8-4-r67

Rights

cc-by, (c) Beltran et al., 2007

http://creativecommons.org/licenses/by/2.0/

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