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  2. G2-M DNA damage checkpoint - Wikipedia

    en.wikipedia.org/wiki/G2-M_DNA_damage_checkpoint

    Steps of the cell cycle. The G 2-M checkpoint occurs between the G 2 and M phases. G2-M arrest. The G 2-M DNA damage checkpoint is an important cell cycle checkpoint in eukaryotic organisms that ensures that cells don't initiate mitosis until damaged or incompletely replicated DNA is sufficiently repaired.

  3. Cell cycle checkpoint - Wikipedia

    en.wikipedia.org/wiki/Cell_cycle_checkpoint

    The G1 checkpoint, also known as the restriction point in mammalian cells and the start point in yeast, is the point at which the cell becomes committed to entering the cell cycle.

  4. Cell cycle - Wikipedia

    en.wikipedia.org/wiki/Cell_cycle

    The eukaryotic cell cycle consists of four distinct phases: G 1 phase, S phase (synthesis), G 2 phase (collectively known as interphase) and M phase (mitosis and cytokinesis). M phase is itself composed of two tightly coupled processes: mitosis, in which the cell's nucleus divides, and cytokinesis, in which the cell's cytoplasm and cell membrane divides forming two daughter cells.

  5. Cell division - Wikipedia

    en.wikipedia.org/wiki/Cell_division

    The G1/S checkpoint, G2/M checkpoint, and the checkpoint between metaphase and anaphase all monitor for DNA damage and halt cell division by inhibiting different cyclin-CDK complexes. The p53 tumor-suppressor protein plays a crucial role at the G1/S checkpoint and the G2/M checkpoint. Activated p53 proteins result in the expression of many ...

  6. Cell synchronization - Wikipedia

    en.wikipedia.org/wiki/Cell_synchronization

    Cell synchronization is a process by which cells in a culture at different stages of the cell cycle are brought to the same phase. Cell synchrony is a vital process in the study of cells progressing through the cell cycle as it allows population-wide data to be collected rather than relying solely on single-cell experiments.

  7. G2 phase - Wikipedia

    en.wikipedia.org/wiki/G2_phase

    However, cyclin A2/CDK complexes do not function strictly as activators of cyclin B1/CDK1 in G 2, as CDK2 has been shown to be required for activation of the p53-independent G 2 checkpoint activity, perhaps through a stabilizing phosphorylation on Cdc6. CDK2-/- cells also have aberrantly high levels of Cdc25A.

  8. Neuronal cell cycle - Wikipedia

    en.wikipedia.org/wiki/Neuronal_cell_cycle

    The criteria for the checkpoints are met through a combination of activating and inhibiting cyclin/CDK complexes as the result of different signaling pathways (Besson et al., 2008; Cánepa et al., 2007; Yasutis and Kozminski, 2013). If the criteria are not met, the cell will arrest in the phase prior to the checkpoint until the criteria are met.

  9. Biological pathway - Wikipedia

    en.wikipedia.org/wiki/Biological_pathway

    Pathways can also turn genes on and off, or spur a cell to move. [1] Some of the most common biological pathways are involved in metabolism, the regulation of gene expression and the transmission of signals. Pathways play a key role in advanced studies of genomics. Most common types of biological pathways: [1] Metabolic pathway; Genetic pathway