Histone désacétylaseUne histone désacétylase (abrégé HDAC) est une enzyme catalysant la perte du groupement acétyl sur la queue N-terminale d'une histone. Leur rôle est l'inverse de celui tenu par les histone acétyltransférases. Les histone désacétylases jouent un rôle important dans la régulation de l'expression génétique. thumb|right|(Dés)acétylation d'un histoneVert : chaîne polypeptidiqueBleu : chaine latérale (Lys)Orange : groupement modifiable D'une manière générale, l'intervention des HDAC entraîne une baisse d'expression au niveau des zones concernées du génome.
Protéine du rétinoblastomeLa protéine du rétinoblastome (pRB) est une protéine de séquestration qui exerce un contrôle négatif du cycle cellulaire. Cette fonction est essentielle dans les organismes pluricellulaires pour éviter la formation de tumeurs malignes qui mettraient en péril l’organisme, ce qui permet de qualifier cette protéine de « suppresseur de tumeur ». Son nom vient de son étroite collaboration dans un cancer ophtalmologique pédiatrique : le rétinoblastome.
Histone deacetylase inhibitorHistone deacetylase inhibitors (HDAC inhibitors, HDACi, HDIs) are chemical compounds that inhibit histone deacetylases. HDIs have a long history of use in psychiatry and neurology as mood stabilizers and anti-epileptics. More recently they are being investigated as possible treatments for cancers, parasitic and inflammatory diseases. To carry out gene expression, a cell must control the coiling and uncoiling of DNA around histones.
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.
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.
HDAC1Histone deacetylase 1 (HDAC1) is an enzyme that in humans is encoded by the HDAC1 gene. Histone acetylation and deacetylation, catalyzed by multisubunit complexes, play a key role in the regulation of eukaryotic gene expression. The protein encoded by this gene belongs to the histone deacetylase/acuc/apha family and is a component of the histone deacetylase complex. It also interacts with retinoblastoma tumor-suppressor protein and this complex is a key element in the control of cell proliferation and differentiation.
Histone acetylation and deacetylationHistone acetylation and deacetylation are the processes by which the lysine residues within the N-terminal tail protruding from the histone core of the nucleosome are acetylated and deacetylated as part of gene regulation. Histone acetylation and deacetylation are essential parts of gene regulation. These reactions are typically catalysed by enzymes with "histone acetyltransferase" (HAT) or "histone deacetylase" (HDAC) activity. Acetylation is the process where an acetyl functional group is transferred from one molecule (in this case, acetyl coenzyme A) to another.
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.
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.
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.