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Cell Research, ISSN 1001-0602, 08/2019, Volume 29, Issue 8, pp. 605 - 606
Journal Article
Journal Article
Aging Cell, ISSN 1474-9718, 2017, Volume 16, Issue 3, pp. 598 - 601
Aging causes significant declines in adult hippocampal neurogenesis and leads to cognitive disability. Emerging evidence demonstrates that decline in the... 
progeroid mouse model | aging | hippocampus | bubR1 | dendrite morphogenesis | Adult neurogenesis | SCHIZOPHRENIA | MICE | CELL BIOLOGY | GERIATRICS & GERONTOLOGY | Neurons - pathology | Protein-Serine-Threonine Kinases - deficiency | RNA, Small Interfering - genetics | Microtubule-Associated Proteins - genetics | Microtubule-Associated Proteins - metabolism | Humans | Progeria - metabolism | Cell Cycle Proteins - antagonists & inhibitors | Neurogenesis - genetics | Neuronal Plasticity - genetics | Aging - genetics | Gene Expression Regulation, Developmental | Progeria - pathology | Protein-Serine-Threonine Kinases - antagonists & inhibitors | Cell Cycle Proteins - genetics | Cell Differentiation | Neurons - metabolism | Neuropeptides - genetics | Disease Models, Animal | Protein-Serine-Threonine Kinases - genetics | Cell Cycle Proteins - deficiency | Mice, Transgenic | Neuropeptides - metabolism | Hippocampus - pathology | Minichromosome Maintenance Complex Component 2 - genetics | Minichromosome Maintenance Complex Component 2 - metabolism | Progeria - genetics | Neural Stem Cells - pathology | Aging - pathology | Hippocampus - metabolism | Animals | Mice | Neural Stem Cells - metabolism | Aging - metabolism | RNA, Small Interfering - metabolism | Neurons | BUBR1 protein | Rodents | Cognitive ability | Aging | Aneuploidy | Children | Neurogenesis | Hippocampus | Short Takes | Short Take
Journal Article
Journal Article
Aging Cell, ISSN 1474-9718, 04/2019, Volume 18, Issue 2, pp. e12899 - n/a
Wnt signaling is a well‐known molecular pathway in age‐related pathogenesis and therapy of disease. While prior studies have mainly focused on Wnt ligands or... 
progeria | myelination | neurogenesis | BubR1 | sFRP3 | CELL BIOLOGY | GERIATRICS & GERONTOLOGY | BUBR1 protein | Dentate gyrus | Myelination | Wnt protein | Body size | Aging | Neurogenesis | Hippocampus | Corpus callosum | Short Take
Journal Article
Journal Article
New Phytologist, ISSN 0028-646X, 1/2015, Volume 205, Issue 1, pp. 202 - 215
The spindle assembly checkpoint (SAC) is a refined surveillance mechanism which ensures that chromosomes undergoing mitosis do not segregate until they are... 
Proteins | Full papers | Yeasts | Mitosis | Kinetochores | Cell cycle | Giant cells | Plants | Chromosomes | Mitotic spindle apparatus | Plant cells | checkpoint | kinetochore | nematode | giant cell | mitosis | cell cycle | Nematode | Checkpoint | Kinetochore | Giant cell | MAD2 | LOCALIZATION | HISTONE H3 VARIANT | MICROTUBULE-ASSOCIATED PROTEIN | SACCHAROMYCES-CEREVISIAE | PLANT SCIENCES | KINETOCHORES | CHROMOSOME MISSEGREGATION | CELL-CYCLE | MITOTIC CHECKPOINT | LIVING CELLS | M Phase Cell Cycle Checkpoints | Mad2 Proteins - metabolism | Genes, Plant | Microtubule-Associated Proteins - metabolism | Molecular Sequence Data | Protein Subunits - metabolism | Spindle Apparatus | Arabidopsis Proteins - metabolism | Microtubules - metabolism | Metaphase | Gene Expression Regulation, Plant | Cell Cycle Proteins - genetics | Nematoda | Plant Roots - growth & development | Green Fluorescent Proteins - metabolism | Arabidopsis Proteins - genetics | Plant Roots - metabolism | Arabidopsis - cytology | Cell Cycle Proteins - metabolism | Subcellular Fractions - metabolism | Arabidopsis - metabolism | Protein Transport | Arabidopsis - genetics | Two-Hybrid System Techniques | Phenotype | Animals | Mad2 Proteins - genetics | Protein Binding | Arabidopsis - parasitology | Mutation | Anaphase | Arabidopsis thaliana | Analysis | Life Sciences | Molecular biology | Cellular Biology | Biochemistry, Molecular Biology
Journal Article