All terms in GO

Label Id Description
gonadotropin-releasing hormone receptor binding GO_0031530
Binding to a receptor for gonadotropin-releasing hormone (GnRH), a peptide hormone that is synthesized and released by the hypothalamus and is responsible for the release of follicle-stimulating hormone (FSH) and luteinizing hormone (LH) from the anterior pituitary.
thyrotropin-releasing hormone receptor binding GO_0031531
Binding to a receptor for thyrotropin-releasing hormone, a tripeptide hormone that is produced by the hypothalamus and stimulates the release of thyroid-stimulating hormone (TSH) and prolactin by the anterior pituitary.
spermine biosynthetic process GO_0006597
The chemical reactions and pathways resulting in the formation of spermine, a polybasic amine found in human sperm, in ribosomes and in some viruses and involved in nucleic acid packaging.
actin cytoskeleton reorganization GO_0031532
A process that is carried out at the cellular level which results in dynamic structural changes to the arrangement of constituent parts of cytoskeletal structures comprising actin filaments and their associated proteins.
phosphagen metabolic process GO_0006599
The chemical reactions and pathways involving phosphagen, any of a group of guanidine phosphates that occur in muscle and can be used to regenerate ATP from ADP during muscular contraction.
mRNA cap methyltransferase complex GO_0031533
A protein complex that consists of an RNA 5' triphosphatase and a guanyl transferase (Cet1p and Ceg1p in S. cerevisiae; Pct1 and Ceg1 in S. pombe) and is involved in mRNA capping.
minus-end directed microtubule sliding GO_0031534
The movement of one microtubule along another microtubule, where the motion is directed towards the minus ends of the microtubules.
microtubule sliding GO_0051012
The movement of one microtubule along another microtubule.
plus-end directed microtubule sliding GO_0031535
The movement of one microtubule along another microtubule, where the motion is directed towards the plus ends of the microtubules.
positive regulation of exit from mitosis GO_0031536
Any process that activates or increases the rate of progression from anaphase/telophase (high mitotic CDK activity) to G1 (low mitotic CDK activity).
regulation of exit from mitosis GO_0007096
Any process involved in the progression from anaphase/telophase to G1 that is associated with a conversion from high to low mitotic CDK activity.
cellular bud neck polarisome GO_0031560
Protein complex that has a role in determining cell polarity, found at the neck of a fungal bud before and during cytokinesis.
cellular bud tip polarisome GO_0031561
Protein complex that has a role in determining cell polarity, found at the tip of a growing fungal bud.
hyphal tip polarisome GO_0031562
Protein complex that has a role in determining cell polarity, found at the tip of a growing fungal hypha.
mating projection tip polarisome GO_0031563
Protein complex that has a role in determining cell polarity, found at the tip of the mating projection in unicellular fungi exposed to mating pheromone.
transcription antitermination GO_0031564
Regulation of transcription by a mechanism that allows RNA polymerase to continue transcription beyond termination site(s).
obsolete cytokinesis checkpoint GO_0031565
OBSOLETE. A mitotic cell cycle checkpoint that detects a defect in cytokinesis and negatively regulates G2/M transition.
actomyosin contractile ring maintenance GO_0031566
The cell cycle process in which the contractile ring is maintained in response to the cytokinesis checkpoint; that is when cytokinesis is delayed awaiting completion of nuclear division or the correct formation of cytokinetic structures. This process occurs in the context of cytokinesis that takes place as part of a cell cycle.
contractile ring maintenance GO_0036212
The process in which the contractile ring is maintained, typically in response to an internal or external cue.
mitotic cell size control checkpoint signaling GO_0031567
A signal transduction process that contributes to a cell size control checkpoint during mitosis.