G2 phaseDISPLAYTITLE:G2 phase G2 phase, Gap 2 phase, or Growth 2 phase, is the third subphase of interphase in the cell cycle directly preceding mitosis. It follows the successful completion of S phase, during which the cell’s DNA is replicated. G2 phase ends with the onset of prophase, the first phase of mitosis in which the cell’s chromatin condenses into chromosomes. G2 phase is a period of rapid cell growth and protein synthesis during which the cell prepares itself for mitosis.
Cycle cellulairevignette|335x335px|Cycle cellulaire d'une cellule eucaryote (car présence de la mitose) Le cycle cellulaire est l'ensemble des étapes qui constituent et délimitent la vie d'une cellule. Ce cycle est composé de plusieurs phases de croissance dans lesquelles la cellule grossit et duplique son matériel génétique (interphase) et d'une phase où celle-ci se divise (mitose) pour donner naissance à deux cellules filles identiques (dans le cas de la mitose). Les cellules filles reproduiront ce cycle, et ainsi de suite.
G0 phaseDISPLAYTITLE:G0 phase The G0 phase describes a cellular state outside of the replicative cell cycle. Classically, cells were thought to enter G0 primarily due to environmental factors, like nutrient deprivation, that limited the resources necessary for proliferation. Thus it was thought of as a resting phase. G0 is now known to take different forms and occur for multiple reasons. For example, most adult neuronal cells, among the most metabolically active cells in the body, are fully differentiated and reside in a terminal G0 phase.
Division cellulairethumb|upright=1.2| Schémas des différents types de divisions cellulaires. La division cellulaire est le mode de multiplication de toute cellule. Elle lui permet de se diviser en plusieurs cellules (deux le plus souvent). C'est donc un processus fondamental dans le monde vivant, puisqu'il est nécessaire à la régénération de tout organisme. Chez les Eucaryotes — caractérisés principalement par des cellules qui possèdent un noyau — il y a deux types de division cellulaire : La mitose qui n'autorise qu'une multiplication asexuée; elle permet la régénération d'un organe, et aussi la croissance.
Mitosedroite|vignette|350px|La mitose est la formation de deux cellules filles identiques génétiquement à la cellule mère. La mitose, du grec mitos qui signifie « filament » (référence à l'aspect des chromosomes en microscopie), est la division cellulaire des eucaryotes par laquelle une cellule mère se transforme en deux cellules filles qui lui sont génétiquement identiques. Les mécanismes de la mitose sont très semblables chez la plupart des eucaryotes, avec seulement quelques variations mineures.
S phaseS phase (Synthesis Phase) is the phase of the cell cycle in which DNA is replicated, occurring between G1 phase and G2 phase. Since accurate duplication of the genome is critical to successful cell division, the processes that occur during S-phase are tightly regulated and widely conserved. G1/S transition Entry into S-phase is controlled by the G1 restriction point (R), which commits cells to the remainder of the cell-cycle if there is adequate nutrients and growth signaling.
Cell cycle checkpointCell cycle checkpoints are control mechanisms in the eukaryotic cell cycle which ensure its proper progression. Each checkpoint serves as a potential termination point along the cell cycle, during which the conditions of the cell are assessed, with progression through the various phases of the cell cycle occurring only when favorable conditions are met. There are many checkpoints in the cell cycle, but the three major ones are: the G1 checkpoint, also known as the Start or restriction checkpoint or Major Checkpoint; the G2/M checkpoint; and the metaphase-to-anaphase transition, also known as the spindle checkpoint.
TélomèreUn télomère est une région hautement répétitive, donc a priori non codante, d'ADN à l'extrémité d'un chromosome. À chaque fois qu'un chromosome en bâtonnet d'un eucaryote est répliqué, lors de la réplication, qui précède la mitose (division cellulaire), le complexe enzymatique de l'ADN polymérase s'avère incapable de copier les derniers nucléotides : l'absence de télomère signifierait la perte rapide d'informations génétiques nécessaires au fonctionnement cellulaire.
G1 phaseDISPLAYTITLE:G1 phase The G1 phase, gap 1 phase, or growth 1 phase, is the first of four phases of the cell cycle that takes place in eukaryotic cell division. In this part of interphase, the cell synthesizes mRNA and proteins in preparation for subsequent steps leading to mitosis. G1 phase ends when the cell moves into the S phase of interphase. Around 30 to 40 percent of cell cycle time is spent in the G1 phase.
Mating of yeastThe yeast Saccharomyces cerevisiae is a simple single-celled eukaryote with both a diploid and haploid mode of existence. The mating of yeast only occurs between haploids, which can be either the a or α (alpha) mating type and thus display simple sexual differentiation. Mating type is determined by a single locus, MAT, which in turn governs the sexual behaviour of both haploid and diploid cells. Through a form of genetic recombination, haploid yeast can switch mating type as often as every cell cycle. S.