All terms in GO
| Label | Id | Description |
|---|---|---|
| negative regulation of vesicle fusion | GO_0031339 | [Any process that stops, prevents, or reduces the frequency, rate or extent of vesicle fusion.] |
| pectic matrix | GO_0048217 | [The gel-like pectin matrix consists of the interlinked acidic and neutral pectin networks that are further cross-linked by calcium bridges. Pectins consist largely of long chains of mostly galacturonic acid units (typically 1,4 linkages and sometimes methyl esters). Three major pectic polysaccharides (homogalacturonan, rhamnogalacturonan I and rhamnogalacturonan II) are thought to occur in all primary cell walls.] |
| Golgi vesicle docking | GO_0048211 | [The initial attachment of a Golgi transport vesicle membrane to a target membrane, mediated by proteins protruding from the membrane of the Golgi vesicle and the target membrane.] |
| vesicle docking | GO_0048278 | [The initial attachment of a transport vesicle membrane to the target membrane, mediated by proteins protruding from the membrane of the vesicle and the target membrane. Docking requires only that the two membranes come close enough for these proteins to interact and adhere.] |
| regulation of vesicle targeting, to, from or within Golgi | GO_0048209 | [Any process that modulates the frequency, rate, or destination of vesicle-mediated transport to, from or within the Golgi apparatus.] |
| Golgi to endosome transport | GO_0006895 | [The directed movement of substances from the Golgi to early sorting endosomes. Clathrin vesicles transport substances from the trans-Golgi to endosomes.] |
| vesicle targeting | GO_0006903 | [The process in which vesicles are directed to specific destination membranes. Targeting involves coordinated interactions among cytoskeletal elements (microtubules or actin filaments), motor proteins, molecules at the vesicle membrane and target membrane surfaces, and vesicle cargo.] |
| Golgi transport vesicle coating | GO_0048200 | [The addition of specific coat proteins to Golgi membranes during the formation of transport vesicles.] |
| vesicle targeting, rough ER to cis-Golgi | GO_0048207 | [The process in which vesicles are directed to specific destination membranes during transport from the rough endoplasmic reticulum to the cis-Golgi.] |
| COPII vesicle coating | GO_0048208 | [The addition of COPII proteins and adaptor proteins to ER membranes during the formation of transport vesicles, forming a vesicle coat.] |
| vesicle coating | GO_0006901 | [A protein coat is added to the vesicle to form the proper shape of the vesicle and to target the vesicle for transport to its destination.] |
| COPII-coated vesicle budding | GO_0090114 | [The evagination of an endoplasmic reticulum membrane, resulting in formation of a COPII-coated vesicle.] |
| COPI-coated vesicle budding | GO_0035964 | [The evagination of a Golgi membrane, resulting in formation of a COPI-coated vesicle.] |
| Golgi vesicle budding | GO_0048194 | [The evagination of the Golgi membrane, resulting in formation of a vesicle.] |
| negative regulation of cardiac chamber morphogenesis | GO_1901220 | [Any process that stops, prevents or reduces the frequency, rate or extent of cardiac chamber morphogenesis.] |
| regulation of cardiac chamber morphogenesis | GO_1901219 | [Any process that modulates the frequency, rate or extent of cardiac chamber morphogenesis.] |
| cardiac chamber morphogenesis | GO_0003206 | [The process in which a cardiac chamber is generated and organized. A cardiac chamber is an enclosed cavity within the heart.] |
| positive regulation of cardiac chamber morphogenesis | GO_1901221 | [Any process that activates or increases the frequency, rate or extent of cardiac chamber morphogenesis.] |
| regulation of NIK/NF-kappaB signaling | GO_1901222 | [Any process that modulates the frequency, rate or extent of NIK/NF-kappaB signaling.] |
| NIK/NF-kappaB signaling | GO_0038061 | [The process in which a signal is passed on to downstream components within the cell through the NIK-dependent processing and activation of NF-KappaB. Begins with activation of the NF-KappaB-inducing kinase (NIK), which in turn phosphorylates and activates IkappaB kinase alpha (IKKalpha). IKKalpha phosphorylates the NF-Kappa B2 protein (p100) leading to p100 processing and release of an active NF-KappaB (p52).] |