scholarly article | Q13442814 |
P50 | author | Randy Schekman | Q740638 |
Kanika Bajaj Pahuja | Q41114339 | ||
Michael Rape | Q55163233 | ||
P2093 | author name string | Katherine E Wickliffe | |
Amita Gorur | |||
Lingyan Jin | |||
Christine Baumgärtel | |||
P2860 | cites work | The genetic basis of a craniofacial disease provides insight into COPII coat assembly. | Q36487336 |
Cancer as an overhealing wound: an old hypothesis revisited | Q37217254 | ||
Integrins: masters and slaves of endocytic transport. | Q37630929 | ||
COPII-mediated vesicle formation at a glance | Q37822575 | ||
Genetic Analyses of Integrin Signaling | Q37855339 | ||
Global identification of modular cullin-RING ligase substrates | Q39462405 | ||
BTB proteins are substrate-specific adaptors in an SCF-like modular ubiquitin ligase containing CUL-3. | Q40633677 | ||
Bcl-2 mutants with restricted subcellular location reveal spatially distinct pathways for apoptosis in different cell types | Q41076577 | ||
Expression of human COL1A1 gene in stably transfected HT1080 cells: the production of a thermostable homotrimer of type I collagen in a recombinant system. | Q41531103 | ||
Imaging of procollagen transport reveals COPI-dependent cargo sorting during ER-to-Golgi transport in mammalian cells | Q43909561 | ||
Deletion of beta 1 integrins in mice results in inner cell mass failure and peri-implantation lethality | Q46917727 | ||
The BTB protein MEL-26 is a substrate-specific adaptor of the CUL-3 ubiquitin-ligase. | Q47069071 | ||
Efficient coupling of Sec23-Sec24 to Sec13-Sec31 drives COPII-dependent collagen secretion and is essential for normal craniofacial development. | Q47073719 | ||
Secretory COPII coat component Sec23a is essential for craniofacial chondrocyte maturation | Q47073852 | ||
sec24d encoding a component of COPII is essential for vertebra formation, revealed by the analysis of the medaka mutant, vbi. | Q48065490 | ||
Cell-cell and cell-extracellular matrix interactions regulate embryonic stem cell differentiation | Q53568085 | ||
Activation of Phosphoinositide 3-OH Kinase by the α6β4 Integrin Promotes Carcinoma Invasion | Q74037504 | ||
BTB/POZ domain proteins are putative substrate adaptors for cullin 3 ubiquitin ligases | Q79120285 | ||
Cullin-3 targets cyclin E for ubiquitination and controls S phase in mammalian cells | Q22010574 | ||
A Cul3-based E3 ligase removes Aurora B from mitotic chromosomes, regulating mitotic progression and completion of cytokinesis in human cells | Q24307672 | ||
TANGO1 facilitates cargo loading at endoplasmic reticulum exit sites | Q24318716 | ||
Cullin mediates degradation of RhoA through evolutionarily conserved BTB adaptors to control actin cytoskeleton structure and cell movement | Q24318748 | ||
Structural basis for cargo regulation of COPII coat assembly | Q24322472 | ||
Identification of a physiological E2 module for the human anaphase-promoting complex | Q24328862 | ||
BTB protein Keap1 targets antioxidant transcription factor Nrf2 for ubiquitination by the Cullin 3-Roc1 ligase | Q24558689 | ||
Systematic and quantitative assessment of the ubiquitin-modified proteome | Q24634631 | ||
Genome-wide association of early-onset myocardial infarction with single nucleotide polymorphisms and copy number variants | Q24645076 | ||
Latent bone metastasis in breast cancer tied to Src-dependent survival signals | Q24648828 | ||
Identification of specific autoantigens in Sjögren's syndrome by SEREX | Q24670481 | ||
Structure and organization of coat proteins in the COPII cage | Q27646519 | ||
cTAGE5 mediates collagen secretion through interaction with TANGO1 at endoplasmic reticulum exit sites | Q28115849 | ||
Transmembrane Collagen Receptors | Q28237498 | ||
The KLHL12-Cullin-3 ubiquitin ligase negatively regulates the Wnt-beta-catenin pathway by targeting Dishevelled for degradation | Q28302850 | ||
Global defects in collagen secretion in a Mia3/TANGO1 knockout mouse | Q28586932 | ||
Metastasis: from dissemination to organ-specific colonization | Q29614295 | ||
Control of the Embryonic Stem Cell State | Q29614793 | ||
Organisation of human ER-exit sites: requirements for the localisation of Sec16 to transitional ER. | Q30489454 | ||
Sec24D-dependent transport of extracellular matrix proteins is required for zebrafish skeletal morphogenesis | Q33815925 | ||
Cranio-lenticulo-sutural dysplasia is caused by a SEC23A mutation leading to abnormal endoplasmic-reticulum-to-Golgi trafficking | Q34566704 | ||
COPII-coated vesicles: flexible enough for large cargo? | Q36173514 | ||
P433 | issue | 7386 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | COPII vesicle coating | Q21100569 |
Cullin 3 | Q21111152 | ||
Kelch like family member 12 | Q21112728 | ||
Ring-box 1 | Q21117428 | ||
SEC31 homolog A, COPII coat complex component | Q21119692 | ||
Cullin 3 | Q21981309 | ||
P304 | page(s) | 495-500 | |
P577 | publication date | 2012-02-23 | |
P1433 | published in | Nature | Q180445 |
P1476 | title | Ubiquitin-dependent regulation of COPII coat size and function | |
P478 | volume | 482 |
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Q38423857 | Extracellular matrix communication and turnover in cardiac physiology and pathology |
Q64911099 | Fatty-acid binding protein 5 modulates the SAR1 GTPase cycle and enhances budding of large COPII cargoes. |
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Q42274716 | Identification of Cysteine Ubiquitylation Sites on the Sec23A Protein of the COPII Complex Required for Vesicle Formation from the ER. |
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Q38932593 | Kinetically distinct sorting pathways through the Golgi exhibit different requirements for Arf1. |
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