All terms in GO
| Label | Id | Description |
|---|---|---|
| regulation of branching involved in mammary gland duct morphogenesis | GO_0060762 |
Any process that modulates the rate, frequency, or extent of branching involved in mammary gland duct morphogenesis.
|
| mammary duct terminal end bud growth | GO_0060763 |
The morphogenetic growth of the large, club-shaped terminal end of a mammary gland duct during prepubertal growth and during puberty.
|
| positive regulation of response to cytokine stimulus | GO_0060760 |
Any process that increases the rate, frequency, or extent of a response to cytokine stimulus.
|
| regulation of response to cytokine stimulus | GO_0060759 |
Any process that modulates the rate, frequency, or extent of a response to cytokine stimulus.
|
| negative regulation of response to cytokine stimulus | GO_0060761 |
Any process that decreases the rate, frequency, or extent of a response to cytokine stimulus.
|
| negative regulation of androgen receptor signaling pathway | GO_0060766 |
Any process that decreases the rate, frequency, or extent of the androgen receptor signaling pathway.
|
| regulation of androgen receptor signaling pathway | GO_0060765 |
Any process that modulates the rate, frequency, or extent of the androgen receptor signaling pathway.
|
| epithelial cell proliferation involved in prostate gland development | GO_0060767 |
The multiplication or reproduction of epithelial cells, resulting in the expansion of a cell population that contributes to the progression of the prostate gland over time.
|
| cell-cell signaling involved in mammary gland development | GO_0060764 |
Any process that mediates the transfer of information from one cell to another and contributes to the progression of the mammary gland, from its initial state to the mature structure.
|
| NAD-independent histone deacetylase activity | GO_0045129 |
Catalysis of the reaction: histone N6-acetyl-L-lysine + H2O = histone L-lysine + acetate. This reaction does not require the presence of NAD, and represents the removal of an acetyl group from a histone.
|
| regulation of epithelial cell proliferation involved in prostate gland development | GO_0060768 |
Any process that modulates the rate, frequency or extent of epithelial cell proliferation that contributes to the progression of the prostate gland over time.
|
| positive regulation of epithelial cell proliferation involved in prostate gland development | GO_0060769 |
Any process that increases the rate, frequency or extent of epithelial cell proliferation that contributes to the progression of the prostate gland over time.
|
| membrane microdomain | GO_0098857 |
A membrane region with a lipid composition that is distinct from that of the membrane regions that surround it.
|
| aflatoxin biosynthetic process | GO_0045122 |
The chemical reactions and pathways resulting in the formation of aflatoxin, a fungal metabolite found as a contaminant in moldy grains that induces liver cancer. Aflatoxin induces a G to T transversion at codon 249 of p53, leading to its inactivation. Aflatoxin is converted to a chemical carcinogen by P450.
|
| aflatoxin metabolic process | GO_0046222 |
The chemical reactions and pathways involving aflatoxin, a fungal metabolite found as a contaminant in moldy grains that induces liver cancer. Aflatoxin induces a G to T transversion at codon 249 of p53, leading to its inactivation. Aflatoxin is converted to a chemical carcinogen by P450.
|
| mycotoxin biosynthetic process | GO_0043386 |
The chemical reactions and pathways resulting in the formation of a mycotoxin, any poisonous substance produced by a fungus.
|
| cellular extravasation | GO_0045123 |
The migration of a leukocyte from the blood vessels into the surrounding tissue.
|
| regulation of bone remodeling | GO_0046850 |
Any process that modulates the frequency, rate or extent of bone remodeling, the processes of bone formation and resorption that combine to maintain skeletal integrity.
|
| GO_0045126 | GO_0045126 | |
| N-acetylglucosamine kinase activity | GO_0045127 |
Catalysis of the reaction: N-acetyl-D-glucosamine + ATP = N-acetyl-D-glucosamine 6-phosphate + ADP + 2 H(+).
|