Type | Description |
---|---|
Definition | Zim17p |
Date | Results | Publications |
---|---|---|
2014-01-04 10:48:00 | the induction of the zim17 mutant phenotype leads to strong import defects for Ssc1-dependent matrix-targeted precursor proteins that correlate with a significantly reduced binding of newly imported substrate proteins to Ssc1. | 24030826 |
2013-02-16 12:06:00 | Zn(2+) induced TIM15 folding is essential for its function and likely occurs in mitochondrial matrix where high concentrations of Zn(2+) were reported. | 23063975 |
2012-12-08 10:59:00 | Arabidopsis Zinc Ribbon 3 is the ortholog of yeast mitochondrial HSP70 escort protein HEP1 and belongs to an ancient protein family in mitochondria and plastids. | 22841711 |
2012-06-02 10:21:00 | Human DNLZ partially complements the growth of Deltazim17 Saccharomyces cerevisiae. | 22162012 |
2011-10-22 11:11:00 | Cells lacking Zim17 (Tim15/Hep1), have limited respiration activity, mimic the metabolic response to iron starvation and suffer a dramatic increase in nuclear genome recombination. | 21511814 |
Type | IDs |
---|---|
Synonymous | HEP1, TIM15 |
Gene |
UniProtKB-ID:
ZIM17_YEAST
UniprotKB:
P42844
UniParc:
UPI0000D796A4
EMBL:
AY558366,
BK006947,
Z46259,
Z71586
EnsemblGenome:
YNL310C
KO:
sce:YNL310C
|
Nucleutide sequences |
EMBL-CDS:
CAA86385.1,
CAA96239.1,
DAA10251.1,
AAS56692.1
Gene_ORFName:
N0381
EnsemblGenome_TRS:
YNL310C_mRNA
|
Protein sequencees |
EnsemblGenome_PRO:
YNL310C
RefSeq:
NP_014089.2
|
Others |
UniRef100:
UniRef100_B3LPE4
UniRef90:
UniRef90_B3LPE4
UniRef50:
UniRef50_B3LPE4
|
{{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 |
---|---|---|---|
29158339 |
G3 (Bethesda) Jason E Miller , Liye Zhang , Haoyang Jiang , Yunfei Li , B Franklin Pugh , Joseph C Reese |
2018-01-04 | - |
25792736 |
Mitochondrial heat shock protein (Hsp) 70 and Hsp10 cooperate in the formation of Hsp60 complexes. J Biol Chem Lena Böttinger , Silke Oeljeklaus , Bernard Guiard , Sabine Rospert , Bettina Warscheid , Thomas Becker |
2015-05-01 | - |
26217697 |
The quantitative changes in the yeast Hsp70 and Hsp90 interactomes upon DNA damage. Data Brief Andrew W Truman , Kolbrun Kristjansdottir , Donald Wolfgeher , Natalia Ricco , Anoop Mayampurath , Samuel L Volchenboum , Josep Clotet , Stephen J Kron |
2015-03-01 | - |
26493364 |
Sci Rep Christopher J Kershaw , Joseph L Costello , David Talavera , William Rowe , Lydia M Castelli , Paul F G Sims , Christopher M Grant , Mark P Ashe , Simon J Hubbard , Graham D Pavitt |
2015-01-01 |
YBL008W-A,
LSO2,
YJL047C-A,
CMC4,
YKL068W-A,
YGR161W-C,
YGL041W-A,
SPB1,
LRE1,
GFD2,
STE50,
FUS1,
PGS1,
MRPL32,
SAT4,
YCR023C,
SLM5,
RHB1,
BPH1,
SNT1,
TAF2,
IMG1,
RAD18,
IMG2,
YCR087C-A,
MSH3,
CDC39,
YCR101C,
SWP82,
RGD2,
OTU1,
RPO41,
MIL1,
GYP8,
IES1,
SMC1,
BLM10,
LOC1,
NIC96,
YFH7,
MIC19,
CMK1,
YFR016C,
ROG3,
SMC2,
RMD8,
PUF3,
SOF1,
COX17,
ORC3,
YCT1,
YLL054C,
NSE1,
PAM18,
PPR1,
BRE2,
UBR2,
SED5,
RAD5,
RSC58,
RIC1,
STU2,
FCF2,
BMT6,
PET309,
MEF1,
LAM6,
FMP25,
SMC4,
CSF1,
XDJ1,
GEP5,
SUL2,
APC9,
MDN1,
REX3,
DIP2,
USB1,
CKI1,
TIS11,
SLS1,
DPH6,
MAS1,
SEC10,
UPS2,
APS1,
YLR177W,
ATG26,
PEX13,
UPS1,
MSS51,
QRI5,
HMX1,
FRE1,
COA4,
RSA3,
IFH1,
YLR225C,
ADY4
|
25452130 |
J Proteomics Andrew W Truman , Kolbrun Kristjansdottir , Donald Wolfgeher , Natalia Ricco , Anoop Mayampurath , Samuel L Volchenboum , Josep Clotet , Stephen J Kron |
2015-01-01 |
SSA1,
RNR4,
HSP82
|
24769239 |
J Proteomics Margaux Renvoisé , Ludovic Bonhomme , Marlène Davanture , Benoit Valot , Michel Zivy , Claire Lemaire |
2014-06-25 |
YJL133C-A,
YOR020W-A,
COX26,
MIC10,
PRD1,
MGR1,
NFS1,
ILV6,
MRPL32,
YCP4,
PGK1,
SLM5,
RIM1,
IMG1,
IMG2,
PTC6,
TRX3,
FMP32,
YPT1,
RPO41,
AGX1,
LPD1,
MDJ1,
SEC4,
MIC19,
QCR6,
DUG1,
YMR31,
HXK1,
SSA2,
COX17,
SDH2,
PAM18,
COX12,
TRX1,
REX2,
MEF1,
FMP25,
ALT1,
XDJ1,
SLS1,
MAS1,
MDL1,
COQ9,
MSS51,
MCP2,
HSP60,
GUF1,
COQ11,
ATP14,
ACO1,
MRPL15,
DIC1,
NIT3,
ILV5,
ATG33,
SSQ1,
CSR1,
NAM2,
ATP10,
COX8,
MRPL4,
CYC3,
FUN14,
GCV3,
TIM22,
MRPL11,
GGC1,
INH1,
DLD2,
DLD1,
CDC9,
STF1,
CDC48,
YFH1,
HEM25,
NDE2,
COX9,
IDP1,
MTF2,
MRX9,
GPD1,
ATP16,
GCV1,
MIX14,
PST2,
MRH1,
EHD3,
RSM10,
TPI1,
YDR061W,
FMP16,
MRX14,
MRPL1,
KGD2,
CPR1,
RSM24,
SDH4,
MSS116
|
24030826 |
J Biol Chem Ilka Lewrenz , Nicole Rietzschel , Bernard Guiard , Roland Lill , Martin van der Laan , Wolfgang Voos |
2013-10-25 | - |
23390603 |
G3 (Bethesda) Derek M van Pel , Peter C Stirling , Sean W Minaker , Payal Sipahimalani , Philip Hieter |
2013-02-01 | - |
23332755 |
The cotranslational function of ribosome-associated Hsp70 in eukaryotic protein homeostasis. Cell Felix Willmund , Marta del Alamo , Sebastian Pechmann , Taotao Chen , Véronique Albanèse , Eric B Dammer , Junmin Peng , Judith Frydman |
2013-01-17 |
VAC17,
MIC10,
PRD1,
KAR4,
PBN1,
APA1,
POF1,
MGR1,
GLK1,
SRO9,
GFD2,
GRX1,
LSB5,
RNQ1,
HBN1,
DCC1,
GBP2,
ILV6,
STP22,
CDC10,
YCP4,
CIT2,
RVS161,
PGK1,
RHB1,
RIM1,
SYP1,
RPS14A,
RRP43,
YCR043C,
YCR051W,
THR4,
CTR86,
PWP2,
YIH1,
TAH1,
HCM1,
RSA4,
SOL2,
FUB1,
PAT1,
AHC2,
TRX3,
TUP1,
CSM1,
YCR090C,
MSH3,
YCR102C,
SNZ3,
SWP82,
RGD2,
SEC53,
OTU1,
ACT1,
YPT1,
TUB2,
MOB2,
RPL22B,
HAC1,
CAF16,
FRS2,
GAT1,
LPD1,
BLM10,
SEC4,
VTC2,
SPB4,
RPN11,
YFR006W,
YFH7,
IOC3,
ATG18,
LSB3,
HIS2,
CDC14,
RPL2A,
DUG1,
BNA6,
RMD8,
YMR31,
PRE4,
RET2,
RPN12,
HXK1,
IRC7,
GRC3,
RIX7,
YLL032C,
FRA1,
ISA1,
HSP104,
SSA2,
HIF1,
DPS1,
LMO1,
ORC3,
RTT109,
MHT1,
YLL058W
|
23063975 |
Zinc induced folding is essential for TIM15 activity as an mtHsp70 chaperone. Biochim. Biophys. Acta Hugo Fraga , Elena Papaleo , Sonia Vega , Adrián Velazquez-Campoy , Salvador Ventura |
2013-01-01 |
SSC1,
ZIM17
|
排名 | 科研单位 | 文献 |
---|---|---|
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