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cell division
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process resulting in division and partitioning of components of a cell to form more cells
Cell division is the process by which a single cell splits and distributes its components to create multiple new cells. It matters because it allows organisms to grow, repair damaged tissues, and reproduce.
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Research
838,261 papers- Proteomics in Cell Division.ReviewProteomics · 2017Üretmen Kagıalı ZC, Şentürk A, Özkan Küçük NE et al.DOI: 10.1002/pmic.201600100
- Dissecting the mechanisms of cell division.ReviewThe Journal of biological chemistry · 2019Ong JY, Torres JZDOI: 10.1074/jbc.AW119.008149
- Asymmetric cell division.ReviewNature · 1998Jan YN, Jan LYDOI: 10.1038/33854
- Cell division and endoreduplication: doubtful engines of vegetative growth.ReviewTrends in plant science · 2008John PC, Qi RDOI: 10.1016/j.tplants.2008.01.004
- Cell division.Experimental cell research · 1960ST AMAND GA, ANDERSON NG, GAULDEN MEDOI: 10.1016/0014-4827(60)90223-8
- Cell division.Harvey lectures · 1957MAZIA D
- The regulation of bacterial cell division: a time and place for it.ReviewCurrent opinion in microbiology · 1998Lutkenhaus JDOI: 10.1016/s1369-5274(98)80013-1
- Endocytosis, asymmetric cell division, stem cells and cancer: unus pro omnibus, omnes pro uno.ReviewMolecular oncology · 2009Fürthauer M, González-Gaitán MDOI: 10.1016/j.molonc.2009.05.006
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Article
Cell division in prokaryotes (binary fission) and eukaryotes (mitosis and meiosis). The thick lines are chromosomes, and the thin blue lines are fibers pulling on the chromosomes and pushing the ends of the cell apart. The cell cycle in eukaryotes: I = Interphase, M = Mitosis, G0 = Gap 0, G1 = Gap 1, G2 = Gap 2, S = Synthesis, G3 = Gap 3. Cell division is the process by which a parent cell divides into two daughter cells. Cell division usually occurs as part of a larger cell cycle in which the cell grows and replicates its chromosome(s) before dividing. In eukaryotes, there are two distinct types of cell division: a vegetative division (mitosis), producing daughter cells genetically identical to the parent cell, and a cell division that produces haploid gametes for sexual reproduction (meiosis), reducing the number of chromosomes from two of each type in the diploid parent cell to one of each type in the daughter cells. Mitosis is a part of the cell cycle, in which, replicated chromosomes are separated into two new nuclei. Cell division gives rise to genetically identical cells in which the total number of chromosomes is maintained. In general, mitosis (division of the nucleus) is preceded by the S stage of interphase (during which the DNA replication occurs) and is followed by telophase and cytokinesis; which divides the cytoplasm, organelles, and cell membrane of one cell into two new cells containing roughly equal shares of these cellular components. The different stages of mitosis all together define the M phase of an animal cell cycle—the division of the mother cell into two genetically identical daughter cells.
To ensure proper progression through the cell cycle, DNA damage is detected and repaired at various cell cycle checkpoints. These checkpoints can halt progression through the cell cycle by inhibiting certain cyclin-CDK complexes. Meiosis undergoes two divisions resulting in four haploid daughter cells. Homologous chromosomes are separated in the first division of meiosis, such that each daughter cell has one copy of each chromosome. These chromosomes have already been replicated and have two sister chromatids which are then separated during the second division of meiosis. Both of these cell division cycles are used in the process of sexual reproduction at some point in their life cycle. Both are believed to be present in the last eukaryotic common ancestor.
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