| Literature DB >> 26082182 |
Kota Saito1, Toshiaki Katada2.
Abstract
Cargo proteins exported from the endoplasmic reticulum to the Golgi apparatus are typically transported in coat protein complex II (COPII)-coated vesicles of 60-90 nm diameter. Several cargo molecules including collagens and chylomicrons form structures that are too large to be accommodated by these vesicles, but their secretion still requires COPII proteins. Here, we first review recent progress on large cargo secretions derived especially from animal models and human diseases, which indicate the importance of COPII proteins. We then discuss the recent isolation of specialized factors that modulate the process of COPII-dependent cargo formation to facilitate the exit of large-sized cargoes from the endoplasmic reticulum. Based on these findings, we propose a model that describes the importance of the GTPase cycle for secretion of oversized cargoes. Next, we summarize reports that describe the structures of COPII proteins and how these results provide insight into the mechanism of assembly of the large cargo carriers. Finally, we discuss what issues remain to be solved in the future.Entities:
Keywords: COPII; Chylomicron; Collagen; TANGO1; cTAGE5
Mesh:
Substances:
Year: 2015 PMID: 26082182 PMCID: PMC4565863 DOI: 10.1007/s00018-015-1952-9
Source DB: PubMed Journal: Cell Mol Life Sci ISSN: 1420-682X Impact factor: 9.261
Fig. 1Localization of ER exit sites within HeLa cells stained by antibodies against trans-membrane protein Sec12 (rat monoclonal 6B3) and cytoplasmic Sec31 (BD biosciences mouse monoclonal). HeLa cells were fixed with cold methanol and processed for immunofluorescence staining as described previously [99]. Bar 10 μm
COPII-related proteins reported in human diseases and animal models
| Gene | Organism | Diseases or animal models | Phenotype | References |
|---|---|---|---|---|
| Sar1B | Human | CMRD, Anderson disease, CMRD-MSS | Severe fat malabsorption | [ |
| Zebrafish | Morpholino | Lipid absorption deficits | [ | |
| Sec23A | Human | CLSD | Intracellular accumulation of collagen I, dilation of the ER | [ |
| Zebrafish | Morpholino | Reduced body length, malformation of cranial cartilage | [ | |
| Zebrafish | Mutant ( | Intracellular accumulation of collagen II, dilation of the ER | [ | |
| Sec23B | Human | Congential dyserythropoietic anemia type II | Ineffective erythropoiesis | [ |
| Mouse | Knockout | Perinatal lethality | [ | |
| Zebrafish | Morpholino | Ineffective erythropoiesis, immature and binucleated erythrocytes | [ | |
| Sec24A | Mouse | Knockout | Normal development, reduced plasma cholesterol | [ |
| Sec24B | Mouse | Mutant | Defects in neural tube closure | [ |
| Sec24C | Mouse | Knockout | Embryonic lethality at approximately embryonic day 7 | [ |
| Zebrafish | Morpholino | Normal in development, short | [ | |
| Sec24D | Human | Osteogenesis imperfecta | Disturbed ossification of the skull, craniofacial defects | [ |
| Mouse | Knockout | Embryonic lethality | [ | |
| Zebrafish | Mutant ( | Craniofacial defects, defects in collagen II secretion, dilation of ER | [ | |
| Medaka | Mutant ( | Craniofacial defects, defects in collagen II secretion, dilation of ER | [ | |
| Sec13 | Zebrafish | Morpholino | Defects in craniofacial development, small eyes | [ |
| Zebrafish | Mutant | Hypoplastic digestive organ, small eyes, collagen II accumulation in ER | [ | |
| Sec31A | Zebrafish | Morpholino | Defects in digestive organ, collagen II accumulation in dilated ER | [ |
| TANGO1 | Mouse | Knockout | Defects in collagen I, II, III, IV, VII, IX secretion | [ |
| Sedlin | Human | SEDT | Short stature, short trunk, degenerative joint, impaired secretion of ECM | [ |
Fig. 2The domain organization of MIA2, cTAGE5, and TANGO1
Fig. 3Schematic of conventional COPII-vesicle budding and cTAGE5/TANGO1-mediated collagen export. Collagen secretion may require tight regulation of the Sar1 GTPase cycle. The cTAGE5/Sec12 complex efficiently activates Sar1, whereas TANGO1/Sedlin enhances its hydrolysis for collagen export