Войдите в систему

Once a transport vesicle has recognized its target organelle, the vesicular membrane needs to fuse with the target membrane to unload the cargo. Transmembrane proteins called SNAREs present on organelle membranes and their vesicles, mediate vesicle fusion.

SNAREs exist in pairs that symmetrically interact and catalyze the fusion of the lipid bilayers in vesicle and target organelle. v-SNARE in the vesicle membrane are single polypeptide chains that bind to a complementary t-SNARE, composed of 2 helical proteins, in the target membrane. The binding of the SNAREs results in forming an active and stable trans-SNARE complex that ensures that the vesicle has bound to the correct location to enable the accurate delivery of cargo.

Rab proteins regulate the inhibitory proteins associated with t-SNAREs to prevent incorrect vesicles from fusing to the target membrane. When the cognate vesicle is in the vicinity, Rab proteins recruit Rab effectors that release the inhibitory proteins and allow the formation of the trans-SNARE complex.

SNARE family of proteins are involved in many pathways such as the retrieval pathway at the ER and Golgi interface, autophagosome fusion with the lysosome, and several other processes such as fertilization of an ovum by sperm, myoblast fusion in muscle fibers, and targeted therapy for several viral diseases such as AIDs, where the viral membrane fuses to the plasma membrane. In animal cells, around 35 different SNAREs are known, each associated with specific organelles in the secretory and endocytic pathways.

Теги
SNAREsMembrane FusionTransport VesicleTarget OrganelleVesicular MembraneCargoTransmembrane ProteinsV SNARET SNARELipid BilayersTrans SNARE ComplexRab ProteinsInhibitory ProteinsRab EffectorsRetrieval PathwayAutophagosome FusionMyoblast FusionViral Diseases

Из главы 17:

article

Now Playing

17.9 : SNAREs and Membrane Fusion

Intracellular Membrane Traffic

7.8K Просмотры

article

17.1 : Введение в мембранный трафик

Intracellular Membrane Traffic

6.1K Просмотры

article

17.2 : Везикулы с покрытием COP

Intracellular Membrane Traffic

7.1K Просмотры

article

17.3 : Везикулы, покрытые клатрином

Intracellular Membrane Traffic

6.2K Просмотры

article

17.4 : Фосфоинозитиды и ПИП

Intracellular Membrane Traffic

5.9K Просмотры

article

17.5 : Сборка покрытия и ГТФазы

Intracellular Membrane Traffic

3.3K Просмотры

article

17.6 : Отщипывание покрытых пузырей

Intracellular Membrane Traffic

2.8K Просмотры

article

17.7 : Белки Rab

Intracellular Membrane Traffic

3.7K Просмотры

article

17.8 : Раб Каскады

Intracellular Membrane Traffic

2.6K Просмотры

article

17.10 : Везикулярные трубчатые скопления

Intracellular Membrane Traffic

2.2K Просмотры

article

17.11 : Путь извлечения ER

Intracellular Membrane Traffic

3.5K Просмотры

article

17.12 : Аппарат Гольджи

Intracellular Membrane Traffic

10.3K Просмотры

article

17.13 : Гликозилирование белка

Intracellular Membrane Traffic

6.3K Просмотры

article

17.14 : Протеогликаны

Intracellular Membrane Traffic

3.8K Просмотры

article

17.15 : Сборка олигосахаридов

Intracellular Membrane Traffic

2.7K Просмотры

See More

JoVE Logo

Исследования

Образование

О JoVE

Авторские права © 2025 MyJoVE Corporation. Все права защищены