GO Term : GO:0098731 skeletal muscle satellite stem cell maintenance involved in skeletal muscle regeneration GO

Namespace:  biological_process Obsolete:  false
description  Any process by which the number of skeletal muscle satellite stem cells in a skeletal muscle is maintained during skeletal muscle regeneration. There are at least two mechanisms by which this is achieved. Skeletal muscle satellite stem cell asymmetric division ensures satellite stem cell numbers are kept constant. Symmetric division of these cells amplifies the number of skeletal muscle satellite stem cells.

0 Cross References

0 Data Sets

1 Ontology

Name
GO

0 Ontology Annotations

22 Parents

Identifier Name Description
GO:0006950 response to stress Any process that results in a change in state or activity of a cell or an organism (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of a disturbance in organismal or cellular homeostasis, usually, but not necessarily, exogenous (e.g. temperature, humidity, ionizing radiation).
GO:0009611 response to wounding Any process that results in a change in state or activity of a cell or an organism (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of a stimulus indicating damage to the organism.
GO:0032502 developmental process A biological process whose specific outcome is the progression of an integrated living unit: an anatomical structure (which may be a subcellular structure, cell, tissue, or organ), or organism over time from an initial condition to a later condition.
GO:0044699 single-organism process A biological process that involves only one organism.
GO:0008150 biological_process Any process specifically pertinent to the functioning of integrated living units: cells, tissues, organs, and organisms. A process is a collection of molecular events with a defined beginning and end.
GO:0050896 response to stimulus Any process that results in a change in state or activity of a cell or an organism (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of a stimulus. The process begins with detection of the stimulus and ends with a change in state or activity or the cell or organism.
GO:0044707 single-multicellular organism process A biological process occurring within a single, multicellular organism.
GO:0032501 multicellular organismal process Any biological process, occurring at the level of a multicellular organism, pertinent to its function.
GO:0044767 single-organism developmental process A biological process whose specific outcome is the progression of an integrated living unit: an anatomical structure (which may be a subcellular structure, cell, tissue, or organ), or organism over time from an initial condition to a later condition, involving only one organism.
GO:0048856 anatomical structure development The biological process whose specific outcome is the progression of an anatomical structure from an initial condition to its mature state. This process begins with the formation of the structure and ends with the mature structure, whatever form that may be including its natural destruction. An anatomical structure is any biological entity that occupies space and is distinguished from its surroundings. Anatomical structures can be macroscopic such as a carpel, or microscopic such as an acrosome.
GO:0040007 growth The increase in size or mass of an entire organism, a part of an organism or a cell.
GO:0009888 tissue development The process whose specific outcome is the progression of a tissue over time, from its formation to the mature structure.
GO:0048589 developmental growth The increase in size or mass of an entire organism, a part of an organism or a cell, where the increase in size or mass has the specific outcome of the progression of the organism over time from one condition to another.
GO:0042060 wound healing The series of events that restore integrity to a damaged tissue, following an injury.
GO:0019827 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.
GO:0098727 maintenance of cell number Any process by which the numbers of cells of a particular type in a tissue are maintained.
GO:0031099 regeneration The regrowth of a lost or destroyed body part, such as an organ or tissue.
GO:0014834 skeletal muscle satellite cell maintenance involved in skeletal muscle regeneration Any process by which the number of skeletal muscle satellite cells in a skeletal muscle is maintained during muscle regeneration. There are at least three mechanisms by which this is achieved. Skeletal muscle satellite stem cell asymmetric division ensures satellite stem cell numbers are kept constant. Symmetric division of these cells amplifies the number of skeletal muscle satellite stem cells. Some adult skeletal muscle myoblasts (descendants of activated satellite cells) can develop back into quiescent satellite cells, replenishing the overall pool of satellite cells.
GO:0043403 skeletal muscle tissue regeneration The regrowth of skeletal muscle tissue to repair injured or damaged muscle fibers in the postnatal stage.
GO:0042246 tissue regeneration The regrowth of lost or destroyed tissues.
GO:0035019 somatic stem cell population maintenance Any process by which an organism retains a population of somatic stem cells, undifferentiated cells in the embryo or adult which can undergo unlimited division and give rise to cell types of the body other than those of the germ-line.
GO:0098731 skeletal muscle satellite stem cell maintenance involved in skeletal muscle regeneration Any process by which the number of skeletal muscle satellite stem cells in a skeletal muscle is maintained during skeletal muscle regeneration. There are at least two mechanisms by which this is achieved. Skeletal muscle satellite stem cell asymmetric division ensures satellite stem cell numbers are kept constant. Symmetric division of these cells amplifies the number of skeletal muscle satellite stem cells.

25 Relations

Relationship
Parent Term . Identifier

Child Term . Identifier
is_a GO:0035019 GO:0098731
is_a GO:0014834 GO:0098731
part of GO:0043403 GO:0098731
part of GO:0009611 GO:0098731
part of GO:0006950 GO:0098731
is_a GO:0098727 GO:0098731
part of GO:0032502 GO:0098731
part of GO:0040007 GO:0098731
part of GO:0009888 GO:0098731
part of GO:0050896 GO:0098731
is_a GO:0044699 GO:0098731
is_a GO:0044767 GO:0098731
part of GO:0031099 GO:0098731
part of GO:0048856 GO:0098731
part of GO:0044699 GO:0098731
is_a GO:0044707 GO:0098731
part of GO:0044767 GO:0098731
part of GO:0042060 GO:0098731
part of GO:0008150 GO:0098731
is_a GO:0019827 GO:0098731
is_a GO:0008150 GO:0098731
part of GO:0042246 GO:0098731
is_a GO:0032501 GO:0098731
part of GO:0048589 GO:0098731
is_a GO:0032502 GO:0098731

0 Synonyms