The endolysosomal system is positioned on the crossroad of the intracellular and extracellular environment and is therefore crucial to regulate many cellular processes. Proper function of the endolysosomal system greatly depends on the concept of membrane identity; the controlled protein and lipid composition of all organellar membranes. Maintaining this identity requires exact timing and regulation of membrane fusion and is crucial for all transport inside the cell. Multi-subunit tethering complexes such as CORVET and HOPS are increasingly implicated as interaction hubs for many aspects of membrane fusion as well as for organelle motility and signaling. In this thesis we investigate the structure and function of the mammalian CORVET and HO...
Yeast studies identified two heterohexameric tethering complexes, which consist of 4 shared (Vps11, ...
The fusion of yeast vacuoles requires a Rab-GTPase (Ypt7), a tethering complex termed HOPS (homotypi...
Multi-subunit tethering complexes control membrane fusion events in eukaryotic cells. Class C core v...
The endolysosomal system is positioned on the crossroad of the intracellular and extracellular envir...
Trafficking of cargo through the endosomal system depends on endosomal fusion events mediated by SNA...
Vesicular transport along the endocytic pathway involves such processes as endosomal maturation and ...
Eukaryotic cells use conserved multisubunit membrane tethering complexes, including CORVET (class C ...
SummaryThe dynamic equilibrium between vesicle fission and fusion at Golgi, endosome, and vacuole/ly...
Early endosomes are organized in a network of vesicles shaped by cycles of fusion, fission, and conv...
Multisubunit tethering complexes (MTCs) are multitasking hubs that form a link between membrane fusi...
Recycling endosomes maintain plasma membrane homeostasis and are important for cell polarity, migrat...
Endosomal biogenesis depends on multiple fusion and fission events. For fusion, the heterohexameric ...
Endosomal biogenesis depends on multiple fusion and fission events. For fusion, the heterohexameric ...
In the endocytic pathway of animals, two related complexes, called CORVET (class C core vacuole/endo...
Endocytosis and autophagy use two tethering complexes: HOPS promotes fusion between Rab7 positive la...
Yeast studies identified two heterohexameric tethering complexes, which consist of 4 shared (Vps11, ...
The fusion of yeast vacuoles requires a Rab-GTPase (Ypt7), a tethering complex termed HOPS (homotypi...
Multi-subunit tethering complexes control membrane fusion events in eukaryotic cells. Class C core v...
The endolysosomal system is positioned on the crossroad of the intracellular and extracellular envir...
Trafficking of cargo through the endosomal system depends on endosomal fusion events mediated by SNA...
Vesicular transport along the endocytic pathway involves such processes as endosomal maturation and ...
Eukaryotic cells use conserved multisubunit membrane tethering complexes, including CORVET (class C ...
SummaryThe dynamic equilibrium between vesicle fission and fusion at Golgi, endosome, and vacuole/ly...
Early endosomes are organized in a network of vesicles shaped by cycles of fusion, fission, and conv...
Multisubunit tethering complexes (MTCs) are multitasking hubs that form a link between membrane fusi...
Recycling endosomes maintain plasma membrane homeostasis and are important for cell polarity, migrat...
Endosomal biogenesis depends on multiple fusion and fission events. For fusion, the heterohexameric ...
Endosomal biogenesis depends on multiple fusion and fission events. For fusion, the heterohexameric ...
In the endocytic pathway of animals, two related complexes, called CORVET (class C core vacuole/endo...
Endocytosis and autophagy use two tethering complexes: HOPS promotes fusion between Rab7 positive la...
Yeast studies identified two heterohexameric tethering complexes, which consist of 4 shared (Vps11, ...
The fusion of yeast vacuoles requires a Rab-GTPase (Ypt7), a tethering complex termed HOPS (homotypi...
Multi-subunit tethering complexes control membrane fusion events in eukaryotic cells. Class C core v...