X chromosome dosage compensation in Drosophila requires chromosome-wide coordination of gene activation. The male-specific lethal dosage compensation complex (DCC) identifies and binds to X-chromosomal high-affinity sites (HAS) from which it boosts transcription. A sub-class of HAS, PionX sites, represent first contacts on the X. Here, we explored the chromosomal interactions of representative PionX sites by high-resolution 4C and determined the global chromosome conformation by Hi-C in sex-sorted embryos. Male and female X chromosomes display similar nuclear architecture, concordant with clustered, constitutively active genes. PionX sites, like HAS, are evenly distributed in the active compartment and engage in short- and long-range intera...
<div><p>The essential process of dosage compensation is required to equalize gene expression of X-ch...
Abstract Background Drosophila melanogaster females have two X chromosomes and two autosome sets (XX...
The Drosophila MSL complex mediates dosage compensation by increasing transcription of the single X ...
Dosage compensation mechanisms provide a paradigm to study the contribution of chromosomal conformat...
The dosage compensation complex (DCC) in Drosophila melanogaster is responsible for up-regulating tr...
In Drosophila melanogaster the single male chromosome X undergoes an average twofold transcriptional...
Dosage compensation in male Drosophila relies on the X chromosome-specific recruitment of a chromati...
The essential process of dosage compensation is required to equalize gene expression of X-chromosome...
The essential process of dosage compensation is required to equalize gene expression of X-chromosome...
In species that use chromosome-based sex determination, the copy number of sexchromosomes differs be...
Abstract Background In Drosophila melanogaster, dosage compensation is mediated by the action of the...
Abstract Background In animals with XY sex chromosomes, X-linked genes from a single X chromosome in...
The three-dimensional organization of a genome plays a critical role in regulating gene expression, ...
The Drosophila MSL complex mediates dosage compensation by increasing transcription of the single X ...
The three-dimensional organization of a genome plays a critical role in regulating gene expression, ...
<div><p>The essential process of dosage compensation is required to equalize gene expression of X-ch...
Abstract Background Drosophila melanogaster females have two X chromosomes and two autosome sets (XX...
The Drosophila MSL complex mediates dosage compensation by increasing transcription of the single X ...
Dosage compensation mechanisms provide a paradigm to study the contribution of chromosomal conformat...
The dosage compensation complex (DCC) in Drosophila melanogaster is responsible for up-regulating tr...
In Drosophila melanogaster the single male chromosome X undergoes an average twofold transcriptional...
Dosage compensation in male Drosophila relies on the X chromosome-specific recruitment of a chromati...
The essential process of dosage compensation is required to equalize gene expression of X-chromosome...
The essential process of dosage compensation is required to equalize gene expression of X-chromosome...
In species that use chromosome-based sex determination, the copy number of sexchromosomes differs be...
Abstract Background In Drosophila melanogaster, dosage compensation is mediated by the action of the...
Abstract Background In animals with XY sex chromosomes, X-linked genes from a single X chromosome in...
The three-dimensional organization of a genome plays a critical role in regulating gene expression, ...
The Drosophila MSL complex mediates dosage compensation by increasing transcription of the single X ...
The three-dimensional organization of a genome plays a critical role in regulating gene expression, ...
<div><p>The essential process of dosage compensation is required to equalize gene expression of X-ch...
Abstract Background Drosophila melanogaster females have two X chromosomes and two autosome sets (XX...
The Drosophila MSL complex mediates dosage compensation by increasing transcription of the single X ...