All terms in GO
| Label | Id | Description |
|---|---|---|
| skeletal muscle satellite cell fate specification | GO_0014817 | [The process in which a cell becomes capable of differentiating autonomously into a skeletal muscle satellite cell in an environment that is neutral with respect to the developmental pathway. Upon specification, the cell fate can be reversed.] |
| skeletal muscle satellite cell commitment | GO_0014813 | [The process in which the developmental fate of a cell becomes restricted such that it will develop into a satellite cell.] |
| positive regulation of tRNA processing | GO_2000237 | [Any process that activates or increases the frequency, rate or extent of tRNA processing.] |
| skeletal muscle satellite cell fate determination | GO_0014818 | [The process in which a cell becomes capable of differentiating autonomously into a skeletal muscle satellite cell regardless of its environment; upon determination, the cell fate cannot be reversed.] |
| initiation of skeletal muscle satellite cell activation by growth factor signaling, involved in skeletal muscle regeneration | GO_0014815 | [Signalling between growth factors and their receptors that results in the activation of satellite cell, where this process is involved in skeletal muscle regeneration. Satellite cells are quiescent cells that are located between the basal lamina and the plasmalemma of the muscle fiber, which are the main contributors to postnatal muscle growth. In adult muscle, satellite cells become activated to divide and differentiate in response to muscle damage.] |
| positive regulation of satellite cell activation involved in skeletal muscle regeneration | GO_0014718 | [Any process that activates, maintains or increases the frequency, rate or extent of activation of satellite cell involved in skeletal muscle regeneration. The activation of satellite cell is the process that initiates satellite cell division by causing it to move from quiescence to the G1 stage of the cell cycle. The cell swells and there are a number of other small changes. The cells then start to divide. Following cell division the cells will differentiate.] |
| skeletal muscle satellite cell differentiation | GO_0014816 | [The process in which a relatively unspecialized cell acquires specialized features of a satellite cell.] |
| skeletal muscle cell differentiation | GO_0035914 | [The process in which a relatively unspecialized cell acquires specialized features of a skeletal muscle cell, a somatic cell located in skeletal muscle.] |
| axon regeneration at neuromuscular junction | GO_0014814 | [The regrowth of axons following their loss or damage at the neuromuscular junction. Motor axons regenerate after injury and they form neuro-muscular junctions with skeletal myofibers similar to normal ones.] |
| tonic smooth muscle contraction | GO_0014820 | [A process in which force is generated within tonic smooth muscle tissue, resulting in a change in muscle geometry. Force generation involves a chemo-mechanical energy conversion step that is carried out by the actin/myosin complex activity, which generates force through ATP hydrolysis. In the tonic smooth muscle, the muscle contraction occurs without an ordered sarcomeric structure. Tonic smooth muscle contraction occurs as a sustained continuous contraction.] |
| phasic smooth muscle contraction | GO_0014821 | [A process in which force is generated within phasic smooth muscle tissue, resulting in a change in muscle geometry. Force generation involves a chemo-mechanical energy conversion step that is carried out by the actin/myosin complex activity, which generates force through ATP hydrolysis. In the phasic smooth muscle, the muscle contraction occurs without an ordered sarcomeric structure. Phasic smooth muscle contraction occurs in a series of discrete contractions and relaxations.] |
| negative regulation of ribosomal subunit export from nucleus | GO_2000201 | [Any process that stops, prevents, or reduces the frequency, rate or extent of ribosomal subunit export from nucleus.] |
| regulation of ribosomal subunit export from nucleus | GO_2000200 | [Any process that modulates the frequency, rate or extent of ribosomal subunit export from nucleus.] |
| ribosomal subunit export from nucleus | GO_0000054 | [The directed movement of a ribosomal subunit from the nucleus into the cytoplasm.] |
| positive regulation of ribosomal subunit export from nucleus | GO_2000202 | [Any process that activates or increases the frequency, rate or extent of ribosomal subunit export from nucleus.] |
| ADP-L-glycero-beta-D-manno-heptose metabolic process | GO_0097170 | [The chemical reactions and pathways involving ADP-L-glycero-beta-D-manno-heptose, an ADP-L-glycero-D-manno-heptose having beta-configuration at the anomeric centre of the heptose. ADP-L-glycero-beta-D-manno-heptose (also called ADP-L-beta-D-heptose or ADP-L-glycero-D-manno-heptose) is a nucleotide-sugar precursor of the inner core lipopolysaccharide (LPS) from D-glycero-beta-D-manno-heptose 7-phosphate.] |
| ADP-L-glycero-beta-D-manno-heptose biosynthetic process | GO_0097171 | [The chemical reactions and pathways resulting in the formation of ADP-L-glycero-beta-D-manno-heptose, an ADP-L-glycero-D-manno-heptose having beta-configuration at the anomeric centre of the heptose. ADP-L-glycero-beta-D-manno-heptose (also called ADP-L-beta-D-heptose or ADP-L-glycero-D-manno-heptose) is a nucleotide-sugar precursor of the inner core lipopolysaccharide (LPS) from D-glycero-beta-D-manno-heptose 7-phosphate.] |
| N-acetylmuramic acid metabolic process | GO_0097172 | [The chemical reactions and pathways involving N-acetylmuramic acid (MurNAc), a monosaccharide derivative of N-acetylglucosamine.] |
| N-acetylmuramic acid catabolic process | GO_0097173 | [The chemical reactions and pathways resulting in the breakdown of N-acetylmuramic acid (MurNAc), a monosaccharide derivative of N-acetylglucosamine.] |
| 1,6-anhydro-N-acetyl-beta-muramic acid metabolic process | GO_0097174 | [The chemical reactions and pathways involving 1,6-anhydro-N-acetyl-beta-muramic acid, the 1,6-anhydro-derivative of N-acetyl-beta-muramic acid.] |