All terms in GO
| Label | Id | Description |
|---|---|---|
| histone-lysine N-methyltransferase activity | GO_0018024 |
Catalysis of the reaction: S-adenosyl-L-methionine + histone L-lysine = S-adenosyl-L-homocysteine + histone N6-methyl-L-lysine. The methylation of peptidyl-lysine in histones forms N6-methyl-L-lysine, N6,N6-dimethyl-L-lysine and N6,N6,N6-trimethyl-L-lysine derivatives.
|
| aggregation involved in sorocarp development | GO_0031152 |
The process whose specific outcome is the progression of the aggregate over time, from its formation to the point when a slug is formed. Aggregate development begins in response to starvation and continues by the chemoattractant-mediated movement of cells toward each other. The aggregate is a multicellular structure that gives rise to the slug.
|
| slug development involved in sorocarp development | GO_0031153 |
The process whose specific outcome is the progression of the slug over time, from its formation to the mature structure. Slug development begins when the aggregate rises upwards to form a finger-shaped structure and ends when culmination begins. Slug development begins after aggregation and ends before culmination in sorocarp development.
|
| culmination involved in sorocarp development | GO_0031154 |
The process whose specific outcome is the progression of the culminant over time, from its formation to the mature structure. Culmination begins with a morphogenetic change of the finger-like or migratory slug giving rise to an organized structure containing a stalk and a sorus. This process is the final stage of sorocarp development.
|
| regulation of aggregate size involved in sorocarp development | GO_0031157 |
Any process that modulates the size of the aggregate formed during sorocarp formation.
|
| regulation of aggregation involved in sorocarp development | GO_0060176 |
Any process that modulates the frequency, rate or extent of aggregation during sorocarp development. Aggregation involved in sorocarp development is the process whose specific outcome is the progression of the aggregate over time, from its formation to the point when a slug is formed. Aggregate development begins in response to starvation and continues by the chemoattractant-mediated movement of cells toward each other. The aggregate is a multicellular structure that gives rise to the slug.
|
| negative regulation of aggregate size involved in sorocarp development | GO_0031158 |
Any process that decreases the size of the aggregate formed during sorocarp formation.
|
| sorocarp stalk development | GO_0031150 |
The process whose specific outcome is the progression of the sorocarp stalk over time, from its formation to the mature structure. The sorocarp stalk is a tubular structure that consists of cellulose-covered cells stacked on top of each other and surrounded by an acellular stalk tube composed of cellulose and glycoprotein. An example of this process is found in Dictyostelium discoideum.
|
| negative regulation of cell size | GO_0045792 |
Any process that reduces cell size.
|
| regulation of cell size | GO_0008361 |
Any process that modulates the size of a cell.
|
| positive regulation of cell size | GO_0045793 |
Any process that increases cell size.
|
| positive regulation of interleukin-35-mediated signaling pathway | GO_0070760 |
Any process that increases the rate, frequency or extent of an interleukin-35-mediated signaling pathway.
|
| regulation of interleukin-35-mediated signaling pathway | GO_0070758 |
Any process that modulates the rate, frequency or extent of an interleukin-35-mediated signaling pathway.
|
| negative regulation of cell volume | GO_0045794 |
Any process that decreases cell volume.
|
| pre-snoRNP complex | GO_0070761 |
A ribonucleoprotein complex that contains a precursor small nucleolar RNA (pre-snoRNA) and associated proteins, and forms during small nucleolar ribonucleoprotein complex (snoRNP) assembly. Pre-snoRNP complexes may contain proteins not found in the corresponding mature snoRNP complexes.
|
| positive regulation of cell volume | GO_0045795 |
Any process that increases cell volume.
|
| nuclear pore transmembrane ring | GO_0070762 |
A subcomplex of the nuclear pore complex (NPC) that spans the nuclear membrane and anchors the NPC to the nuclear envelope. In S. cerevisiae, the transmembrane ring is composed of Pom152p, Pom34p, and Ndc1p. In vertebrates, it is composed of Gp210, Ndc1, and Pom121. Components are arranged in 8-fold symmetrical 'spokes' around the central transport channel. A single 'spoke', can be isolated and is sometime referred to as the Ndc1 complex.
|
| negative regulation of intestinal cholesterol absorption | GO_0045796 |
Any process that stops, prevents, or reduces the frequency, rate or extent of uptake of cholesterol into the blood by absorption from the intestine.
|
| negative regulation of cholesterol transport | GO_0032375 |
Any process that stops, prevents, or reduces the frequency, rate or extent of the directed movement of cholesterol into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore.
|
| regulation of intestinal cholesterol absorption | GO_0030300 |
Any process that modulates the frequency, rate or extent of absorption of cholesterol into the blood, and the exclusion of other sterols from absorption.
|