Frontiers in Genetics (Dec 2022)

Mechanisms of enhancer-promoter communication and chromosomal architecture in mammals and Drosophila

  • Olga V. Kyrchanova,
  • Oleg V. Bylino,
  • Pavel G. Georgiev

DOI
https://doi.org/10.3389/fgene.2022.1081088
Journal volume & issue
Vol. 13

Abstract

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The spatial organization of chromosomes is involved in regulating the majority of intranuclear processes in higher eukaryotes, including gene expression. Drosophila was used as a model to discover many transcription factors whose homologs play a key role in regulation of gene expression in mammals. According to modern views, a cohesin complex mostly determines the architecture of mammalian chromosomes by forming chromatin loops on anchors created by the CTCF DNA-binding architectural protein. The role of the cohesin complex in chromosome architecture is poorly understood in Drosophila, and CTCF is merely one of many Drosophila architectural proteins with a proven potential to organize specific long-range interactions between regulatory elements in the genome. The review compares the mechanisms responsible for long-range interactions and chromosome architecture between mammals and Drosophila.

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