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sister chromatid biorientation
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Body Atlas
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Trachea
Coronary artery
Cervix
Endometrium
Breast tissue
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Disease Atlas
Most Correlated Diseases
Pyloric ulcer
Injury of eye region
Lyme disease
Retinoblastoma
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C.I. Direct Black 168
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RICTOR
STRN3
DNM1L
GNB1
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Curated Studies
Most Correlated Studies
Cystic fibrosis bronchial epithelial cells expressing mutant CFTR and treated with small molecules
Esophageal epithelium from NRF2 mutant mice with induced gastric and duodenal reflux
Spatio-temporal transcriptome of the human brain
Macrophages activated alternatively with IL-4 or classically with IFN-gamma and TNF
Dendritic cells and monocytes treated with different vaccines and TLR ligands
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Literature
Most Relevant Literature
Pericentromeric sister chromatid cohesion promotes kinetochore biorientation.
Pericentric chromatin loops function as a nonlinear spring in mitotic force balance.
S. cerevisiae chromosomes biorient via gradual resolution of syntely between S phase and anaphase.
Uncoordinated loss of chromatid cohesion is a common outcome of extended metaphase arrest.
Budding yeast mitotic chromosomes have an intrinsic bias to biorient on the spindle.
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Clinical Trials
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There were no clinical trials for sister chromatid biorientation
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