Item does not contain fulltextDosage compensation in Drosophila is dependent on MSL proteins and involves hypertranscription of the male X chromosome, which ensures equal X-linked gene expression in both sexes. Here, we report the purification of enzymatically active MSL complexes from Drosophila embryos, Schneider cells, and human HeLa cells. We find a stable association of the histone H4 lysine 16-specific acetyltransferase MOF with the RNA/protein containing MSL complex as well as with an evolutionary conserved complex. We show that the MSL complex interacts with several components of the nuclear pore, in particular Mtor/TPR and Nup153. Strikingly, knockdown of Mtor or Nup153 results in loss of the typical MSL X-chromosomal staining and ...
Sex chromosome dosage compensation in Drosophila provides a model for understanding how chromatin or...
Nuclear pore complexes are best known for their regulation of nucleocytoplasmic transport as integra...
The Drosophila MSL complex mediates dosage compensation by increasing transcription of the single X ...
Dosage compensation in Drosophila is dependent on MSL proteins and involves hypertranscription of th...
Dosage compensation in Drosophila is dependent on MSL proteins and involves hypertranscription of th...
Dosage Compensation (DC) in Drosophila melanogaster involves the precise transcriptional upregulatio...
Dosage Compensation (DC) in Drosophila melanogaster involves the precise transcriptional upregulatio...
Transcriptional regulation is one of the most important processes for modulating gene expression. Th...
Transcriptional regulation is one of the most important processes for modulating gene expression. Th...
Drosophila MSL complex binds the single male X chromosome to upregulate gene expression to equal tha...
Dosage compensation in Drosophila is controlled by a complex (DCC) of proteins and noncoding RNA tha...
Dosage compensation ensures equal expression of X-linked genes in males and females. In Drosophila, ...
X chromosomal regulation is a process that presents systematic problems of chromosome recognition an...
Nuclear pore complexes are best known for their regulation of nucleocytoplasmic transport as integra...
The regulatory mechanism of dosage compensation is the paramount example of epigenetic regulation at...
Sex chromosome dosage compensation in Drosophila provides a model for understanding how chromatin or...
Nuclear pore complexes are best known for their regulation of nucleocytoplasmic transport as integra...
The Drosophila MSL complex mediates dosage compensation by increasing transcription of the single X ...
Dosage compensation in Drosophila is dependent on MSL proteins and involves hypertranscription of th...
Dosage compensation in Drosophila is dependent on MSL proteins and involves hypertranscription of th...
Dosage Compensation (DC) in Drosophila melanogaster involves the precise transcriptional upregulatio...
Dosage Compensation (DC) in Drosophila melanogaster involves the precise transcriptional upregulatio...
Transcriptional regulation is one of the most important processes for modulating gene expression. Th...
Transcriptional regulation is one of the most important processes for modulating gene expression. Th...
Drosophila MSL complex binds the single male X chromosome to upregulate gene expression to equal tha...
Dosage compensation in Drosophila is controlled by a complex (DCC) of proteins and noncoding RNA tha...
Dosage compensation ensures equal expression of X-linked genes in males and females. In Drosophila, ...
X chromosomal regulation is a process that presents systematic problems of chromosome recognition an...
Nuclear pore complexes are best known for their regulation of nucleocytoplasmic transport as integra...
The regulatory mechanism of dosage compensation is the paramount example of epigenetic regulation at...
Sex chromosome dosage compensation in Drosophila provides a model for understanding how chromatin or...
Nuclear pore complexes are best known for their regulation of nucleocytoplasmic transport as integra...
The Drosophila MSL complex mediates dosage compensation by increasing transcription of the single X ...