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1.
International Journal of Pediatrics ; (6): 194-197, 2019.
Article in Chinese | WPRIM | ID: wpr-742846

ABSTRACT

The GATA transcription factor family is a type of transcription regulatory factors containing zinc finger structure,in which GATA4,GATA5 and GATA6 play a key role in the process of heart development and functional maturity.A large number of studies have confirmed that the GATA transcription factor family is not only involved in the the heart development,but also its mutations are related to the occurrence of human congenital heart diseases (CHD).This article mainly reviews the relationship between GATA family with heart development,and the relationship between GATA family gene mutation with congenital heart diseases.

2.
Genomics & Informatics ; : 147-160, 2006.
Article in English | WPRIM | ID: wpr-91154

ABSTRACT

GATA transcription factors are widespread eukaryotic regulators whose DNA-binding domain is a class IV zinc finger motif in the form CX(2)CX(17-20)CX(2)C followed by a basic region. In fungi, they act as transcriptional activators or repressors in several different processes, ranging from nitrogen source utilization to mating-type switching. Using an in-house bioinformatics portal system, we surveyed 50 fungal and 9 out-group genomes and identified 396 putative fungal GATA transcription factors. The proportion of GATA transcription factors within a genome varied among taxonomic lineages. Subsequent analyses of phylogenetic relationships among the fungal GATA transcription factors, as well as a study of their domain architecture and gene structure, demonstrated high degrees of conservation in type IVa and type IVb zinc finger motifs and the existence of distinctive clusters at least at the level of subphylum. The SFH1 subgroup with a 20-residue loop was newly identified, in addition to six well-defined subgroups in the subphylum Pezizomycotina. Furthermore, a novel GATA motif with a 21-residue loop (CX(2)CX(21)CX(2)C, designated 'zinc finger type IVc') was discovered within the phylum Basidiomycota. Our results suggest that fungal GATA factors might have undergone multiple distinct modes of evolution resulting in diversified cellular modulation in fungi.


Subject(s)
Basidiomycota , Computational Biology , Fingers , Fungi , GATA Transcription Factors , Genome , Nitrogen , Portal System , Zinc Fingers
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