Summary Topoisomerase IIbeta (Top2b) is an enzyme that modulates DNA supercoiling by catalyzing the passage of DNA duplexes through one another. It is ubiquitously expressed in postmitotic cells and known to function during the development of neuromuscular junctions in the diaphragm and the proper formation of laminar structure in the cerebral cortex. However, due to the perinatal death phenotype of the traditional constitutive and brain-specific Top2b knockout mice, the precise in vivo function of Top2b, especially during postnatal neural development, remains to be determined. Using both the constitutive and retina-specific knockout mouse models, we showed that Top2b deficiency resulted in delayed neuronal differentiation, degeneration of ...
Topoisomerase II (TOP2) removes torsional stress from DNA and facilitates gene transcription by intr...
Background Genetic alterations in human topoisomerase II alpha (TOP2A) are linked to cancer suscept...
Regulation of cell survival is critical for organ development. Translationally controlled tumor prot...
Topoisomerase IIbeta (Top2b) is an enzyme that modulates DNA supercoiling by catalyzing the passage ...
Topoisomerase II beta (Top2b) is an enzyme that assists with DNA transcription by controlling the to...
Topoisomerases are essential for DNA replication in dividing cells, but their genomic targets and fu...
Topoisomerases are essential for DNA replication in dividing cells, but their genomic targets and fu...
The specific partnering of synaptically connected neurons is central to nervous system function. Pro...
Topoisomerase 2β (TOP2B) introduces transient double strand breaks in the DNA helix to remove superc...
The mammalian brain has unparalleled diversity of cell types with distinct molecular, morphological,...
Retinal development involves defined guidance of neuronal axons to their destined cells through cell...
DNA topoisomerase II (topo II) catalyzes a strand passage reaction in that one duplex is passed thro...
Topoisomerase 1 (TOP1) relieves torsional stress in DNA during transcription and facilitates the exp...
Abstract: Regulation of cell survival is critical for organ development. Translationally controlled ...
Topoisomerase II (TOP2) removes torsional stress from DNA and facilitates gene transcription by intr...
Topoisomerase II (TOP2) removes torsional stress from DNA and facilitates gene transcription by intr...
Background Genetic alterations in human topoisomerase II alpha (TOP2A) are linked to cancer suscept...
Regulation of cell survival is critical for organ development. Translationally controlled tumor prot...
Topoisomerase IIbeta (Top2b) is an enzyme that modulates DNA supercoiling by catalyzing the passage ...
Topoisomerase II beta (Top2b) is an enzyme that assists with DNA transcription by controlling the to...
Topoisomerases are essential for DNA replication in dividing cells, but their genomic targets and fu...
Topoisomerases are essential for DNA replication in dividing cells, but their genomic targets and fu...
The specific partnering of synaptically connected neurons is central to nervous system function. Pro...
Topoisomerase 2β (TOP2B) introduces transient double strand breaks in the DNA helix to remove superc...
The mammalian brain has unparalleled diversity of cell types with distinct molecular, morphological,...
Retinal development involves defined guidance of neuronal axons to their destined cells through cell...
DNA topoisomerase II (topo II) catalyzes a strand passage reaction in that one duplex is passed thro...
Topoisomerase 1 (TOP1) relieves torsional stress in DNA during transcription and facilitates the exp...
Abstract: Regulation of cell survival is critical for organ development. Translationally controlled ...
Topoisomerase II (TOP2) removes torsional stress from DNA and facilitates gene transcription by intr...
Topoisomerase II (TOP2) removes torsional stress from DNA and facilitates gene transcription by intr...
Background Genetic alterations in human topoisomerase II alpha (TOP2A) are linked to cancer suscept...
Regulation of cell survival is critical for organ development. Translationally controlled tumor prot...