Type | Description |
---|---|
Definition | Erv41p |
Date | Results | Publications |
---|---|---|
2020-09-19 16:30:00 | Molecular dissection of the Erv41-Erv46 retrograde receptor reveals a conserved cysteine-rich region in Erv46 required for retrieval activity. | 31825724 |
2015-03-21 10:35:00 | Binding of specific cargo by the Erv41-Erv46 complex in Golgi compartments identifies escaped endoplasmic reticulum (ER) resident proteins for retrieval to the ER. | 25583996 |
2014-02-08 10:36:00 | The full lumen domain of Erv41p was recombinantly expressed and purified. | 23695573 |
2013-08-03 11:57:00 | The structure reveals the protein to be composed predominantly of two large beta-sheets that form a twisted beta-sandwich. | 23524136 |
Type | IDs |
---|---|
Gene |
UniProtKB-ID:
ERV41_YEAST
UniprotKB:
Q04651
UniParc:
UPI0000053251
EMBL:
Z38114,
BK006946
EnsemblGenome:
YML067C
KO:
sce:YML067C
|
Nucleutide sequences |
EMBL-CDS:
CAA86253.1,
DAA09830.1,
CAA86254.1
EnsemblGenome_TRS:
YML067C_mRNA
|
Protein sequencees |
EnsemblGenome_PRO:
YML067C
RefSeq:
NP_013644.1
|
Others |
UniRef100:
UniRef100_Q04651
UniRef90:
UniRef90_Q04651
UniRef50:
UniRef50_Q04651
|
{{proteinIndex+1}} | mRNA | Protein | UniprotKB | Description | ||||
---|---|---|---|---|---|---|---|---|
Refseq |
{{protein.nucleotideVersion}}
Ensembl: {{protein.nucleotideEnsembl}} |
{{protein.proteinVersion}}
Ensembl: {{protein.proteinEnsembl}} |
{{uniprot}} , |
Definition: {{{protein.definition}}}Transcript Veriant:{{protein.transcriptVeriant}} Status: {{protein.status}} |
||||
Location | {{protein.contigId}} ( {{protein.positionStart}}..{{protein.positionEnd}} , {{protein.orientation}} ) | |||||||
Conserved domain | Region: {{conservedDomain.region == '' || conservedDomain.region == null ? "-": conservedDomain.region}} GFID: {{conservedDomain.gfid == '' || conservedDomain.gfid == null ? "-": conservedDomain.gfid}} Family: {{conservedDomain.family == '' || conservedDomain.family == null ? "-": conservedDomain.family}} CDD: {{conservedDomain.cdd}} - |
{{conservedDomain.comments == '' || conservedDomain.comments == null ? "-" : conservedDomain.comments }} |
Region: {{conservedDomain.region == '' || conservedDomain.region == null ? "-": conservedDomain.region}} GFID: {{conservedDomain.gfid == '' || conservedDomain.gfid == null ? "-": conservedDomain.gfid}} Family: {{conservedDomain.family == '' || conservedDomain.family == null ? "-": conservedDomain.family}} CDD: {{conservedDomain.cdd}} - |
{{conservedDomain.comments == '' || conservedDomain.comments == null ? "-" : conservedDomain.comments }} |
暂无数据
Pubmed编号 | 文献信息 | 发表日期 | 相关基因 |
---|---|---|---|
33115720 |
G3 (Bethesda) Elsbeth Sanders , Phoebe A Nguyen , Cody M Rogers , Matthew L Bochman |
2020-12-03 | - |
31825724 |
Mol Biol Cell Kristofer J Keiser , Charles Barlowe |
2020-02-01 | - |
27821408 |
A novel translational control mechanism involving RNA structures within coding sequences. Genome Res. Jennifer Jungfleisch , Danny D Nedialkova , Ivan Dotu , Katherine E Sloan , Neus Martinez-Bosch , Lukas Brüning , Emanuele Raineri , Pilar Navarro , Markus T Bohnsack , Sebastian A Leidel , Juana DÃez |
2017-01-01 | - |
27708008 |
A global genetic interaction network maps a wiring diagram of cellular function. Science Michael Costanzo , Benjamin VanderSluis , Elizabeth N Koch , Anastasia Baryshnikova , Carles Pons , Guihong Tan , Wen Wang , Matej Usaj , Julia Hanchard , Susan D Lee , Vicent Pelechano , Erin B Styles , Maximilian Billmann , Jolanda van Leeuwen , Nydia van Dyk , Zhen-Yuan Lin , Elena Kuzmin , Justin Nelson , Jeff S Piotrowski , Tharan Srikumar , Sondra Bahr , Yiqun Chen , Raamesh Deshpande , Christoph F Kurat , Sheena C Li , Zhijian Li , Mojca Mattiazzi Usaj , Hiroki Okada , Natasha Pascoe , Bryan-Joseph San Luis , Sara Sharifpoor , Emira Shuteriqi , Scott W Simpkins , Jamie Snider , Harsha Garadi Suresh , Yizhao Tan , Hongwei Zhu , Noel Malod-Dognin , Vuk Janjic , Natasa Przulj , Olga G Troyanskaya , Igor Stagljar , Tian Xia , Yoshikazu Ohya , Anne-Claude Gingras , Brian Raught , Michael Boutros , Lars M Steinmetz , Claire L Moore , Adam P Rosebrock , Amy A Caudy , Chad L Myers , Brenda Andrews , Charles Boone |
2016-09-23 | - |
26524240 |
Protein-RNA networks revealed through covalent RNA marks. Nat. Methods Christopher P Lapointe , Daniel Wilinski , Harriet A J Saunders , Marvin Wickens |
2015-12-01 | - |
25583996 |
The Erv41-Erv46 complex serves as a retrograde receptor to retrieve escaped ER proteins. J. Cell Biol. Aya Shibuya , Neil Margulis , Romain Christiano , Tobias C Walther , Charles Barlowe |
2015-01-19 |
ERV46,
ERV41
|
24585773 |
Distinct adaptor proteins assist exit of Kre2-family proteins from the yeast ER. Biol Open Yoichi Noda , Takehiro Hara , Minako Ishii , Koji Yoda |
2014-03-15 | - |
23904270 |
ER exit sites are physical and functional core autophagosome biogenesis components. Mol. Biol. Cell Martin Graef , Jonathan R Friedman , Christopher Graham , Mohan Babu , Jodi Nunnari |
2013-09-01 |
ELO2,
EMP47,
YPT1,
SEC4,
ATG18,
VPS13,
SNF7,
SED5,
BOS1,
EMP46,
NYV1,
KIN2,
PEP3,
SEC13,
VPS34,
SSP120,
SEC22,
FKS1,
VPS38,
VPS33,
ATG17,
ATG23,
SNC1,
DRS2,
ERP2,
ERV46,
ERP1,
SEC31,
ATG9,
CDC48,
BUG1,
RCR2,
ATG31,
TVP23,
DNF2,
KIN1,
SAC6,
ENT5,
SLY1,
SEC26,
AKR1,
TLG1,
GRH1,
SFT2,
ATG8,
SEC17,
PEP1,
SEC18,
VPS15,
CMD1,
ATG14,
FTH1,
SDS24,
APM3,
SEC15,
YPT32,
CHC1,
EMP24,
ATG1,
PMR1,
SEC27,
VPS45,
PRM8,
PIL1,
YIP1,
ATG27,
VPS35,
PEP8,
SYS1,
COY1,
SSH4,
VPS24,
SFT1,
DID4,
VPS1,
YPT52,
SPO14,
DID2,
TVP38,
APM4,
TLG2,
AKR2,
PEP12,
WHI2,
VPS21,
VAM3,
VPS17,
MYO2,
SNC2,
VTH1,
SEC24,
NEO1,
GVP36,
BET1,
ERV41,
SUR7,
ERV25,
YPT7,
STV1
|
23891562 |
A lipid E-MAP identifies Ubx2 as a critical regulator of lipid saturation and lipid bilayer stress. Mol. Cell Michal A Surma , Christian Klose , Debby Peng , Michael Shales , Caroline Mrejen , Adam Stefanko , Hannes Braberg , David E Gordon , Daniela Vorkel , Christer S Ejsing , Robert Farese , Kai Simons , Nevan J Krogan , Robert Ernst |
2013-08-22 |
PBN1,
LRE1,
SPS22,
EMC1,
RER1,
YCL001W-A,
RVS161,
CWH43,
BPH1,
ARE1,
YCR061W,
ABP1,
FIG2,
YPT1,
HAC1,
BST1,
BUD27,
SEC4,
RPN11,
FAB1,
PRE4,
RET2,
RPN12,
GPI13,
SSA2,
KNS1,
EMC6,
UBR2,
SED5,
PAU23,
RIC1,
ERG3,
MNL2,
KIN2,
ERG27,
CCW12,
AVL9,
YPS1,
ACE2,
CKI1,
SEC10,
PEX13,
ARV1,
LCB5,
YPT6,
SEC22,
CTS1,
SEC72,
CHS5,
MID2,
GAS2,
ORM2,
VPS38,
ROM2,
ELO3,
SEC61,
CCW14,
SEI1,
BLS1,
TUS1,
CNA1,
ECM30,
SEC39,
ECM7,
HMG2,
CDC24,
SNC1,
PMT2,
PSK1,
SYN8,
SPO7,
FLO9,
CNE1,
PEX22,
ERV46,
VPS8,
ERP1,
UIP3,
MST28,
SWH1,
FLO1,
FMP45,
SHR3,
ARF1,
COS7,
ENT1,
RPN5,
CRD1,
ARF2,
SRF1,
IWR1,
YDL109C,
GET3,
RPN6,
PMT1,
PMT5,
VAM6,
PEX19,
USO1
|
23524136 |
J. Mol. Biol. Ekaterina I Biterova , Maria Svärd , Dominik D D Possner , Jodie E Guy |
2013-06-26 |
ERV41
|
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