| cell cycle |
The progression of biochemical and morphological phases and events that occur in a cell during successive cell replication or nuclear replication events. Canonically, the cell cycle comprises the replication and segregation of genetic material followed by the division of the cell, but in endocycles or syncytial cells nuclear replication or nuclear division may not be followed by cell division. |
| cellular response to lipopolysaccharide |
Any process that results in a change in state or activity of a cell (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of a lipopolysaccharide stimulus; lipopolysaccharide is a major component of the cell wall of gram-negative bacteria. |
| endodermal cell fate commitment |
The cell differentiation process that results in commitment of a cell to become part of the endoderm. |
| histone H2B ubiquitination |
The modification of histone H2B by addition of ubiquitin groups. |
| histone monoubiquitination |
The modification of histones by addition of a single ubiquitin group. |
| mRNA polyadenylation |
The enzymatic addition of a sequence of 40-200 adenylyl residues at the 3' end of a eukaryotic mRNA primary transcript. |
| negative regulation of apoptotic process |
Any process that stops, prevents, or reduces the frequency, rate or extent of cell death by apoptotic process. |
| negative regulation of cell population proliferation |
Any process that stops, prevents or reduces the rate or extent of cell proliferation. |
| negative regulation of epithelial cell proliferation |
Any process that stops, prevents or reduces the rate or extent of epithelial cell proliferation. |
| negative regulation of fibroblast proliferation |
Any process that stops, prevents, or reduces the frequency, rate or extent of multiplication or reproduction of fibroblast cells. |
| negative regulation of G1/S transition of mitotic cell cycle |
Any signalling pathway that decreases or inhibits the activity of a cell cycle cyclin-dependent protein kinase to modulate the switch from G1 phase to S phase of the mitotic cell cycle. |
| negative regulation of myeloid cell differentiation |
Any process that stops, prevents, or reduces the frequency, rate or extent of myeloid cell differentiation. |
| negative regulation of transcription by RNA polymerase II |
Any process that stops, prevents, or reduces the frequency, rate or extent of transcription mediated by RNA polymerase II. |
| positive regulation of cell cycle G1/S phase transition |
Any signalling pathway that activates or increases the activity of a cell cycle cyclin-dependent protein kinase to modulate the switch from G1 phase to S phase of the cell cycle. |
| positive regulation of mRNA 3'-end processing |
Any process that activates or increases the frequency, rate or extent of mRNA 3'-end processing. |
| positive regulation of transcription elongation by RNA polymerase II |
Any process that activates or increases the frequency, rate or extent of transcription elongation, the extension of an RNA molecule after transcription initiation and promoter clearance by the addition of ribonucleotides, catalyzed by RNA polymerase II. |
| positive regulation of Wnt signaling pathway |
Any process that activates or increases the frequency, rate or extent of Wnt signal transduction. |
| protein destabilization |
Any process that decreases the stability of a protein, making it more vulnerable to degradative processes or aggregation. |
| recruitment of 3'-end processing factors to RNA polymerase II holoenzyme complex |
The process in which proteins required for 3'-end transcript processing become associated with the RNA polymerase II holoenzyme complex and the 3' end of a transcript. |
| regulation of cell growth |
Any process that modulates the frequency, rate, extent or direction of cell growth. |
| regulation of transcription by RNA polymerase II |
Any process that modulates the frequency, rate or extent of transcription mediated by RNA polymerase II. |
| stem cell population maintenance |
The process by which an organism or tissue maintains a population of stem cells of a single type. This can be achieved by a number of mechanisms: stem cell asymmetric division maintains stem cell numbers; stem cell symmetric division increases them; maintenance of a stem cell niche maintains the conditions for commitment to the stem cell fate for some types of stem cell; stem cells may arise de novo from other cell types. |
| transcription elongation by RNA polymerase II promoter |
The extension of an RNA molecule after transcription initiation and promoter clearance at an RNA polymerase II promoter by the addition of ribonucleotides catalyzed by RNA polymerase II. |
| Wnt signaling pathway |
The series of molecular signals initiated by binding of a Wnt protein to a frizzled family receptor on the surface of the target cell and ending with a change in cell state. |