Type | Description |
---|---|
Definition | putative TOR signaling pathway transcriptional corepressor Crf1 |
Date | Results | Publications |
---|---|---|
2020-05-09 12:12:00 | we observed that the Crf1 transcriptional corepressor for ribosomal genes is a strong effector of Cts1 filamentation. Our findings connect TOR signaling, a major pathway required for cell growth, with the compartmentalization of the essential nucleotide synthesis enzyme CTPS, and we uncover differences in the regulation of its filamentation among higher multicellular and unicellular eukaryotic systems. | 31431504 |
Type | IDs |
---|---|
Gene |
UniProtKB-ID:
YD4B_SCHPO
UniprotKB:
Q10304
UniParc:
UPI000013A852
EMBL:
CU329670
EnsemblGenome:
SPAC22H10.11c
KO:
spo:SPAC22H10.11c
|
Nucleutide sequences |
EMBL-CDS:
CAA93611.1
Gene_ORFName:
SPAC22H10.11c
EnsemblGenome_TRS:
SPAC22H10.11c.1
|
Protein sequencees |
EnsemblGenome_PRO:
SPAC22H10.11c.1:pep
RefSeq:
NP_593748.1
|
Others |
UniRef100:
UniRef100_Q10304
UniRef90:
UniRef90_Q10304
UniRef50:
UniRef50_Q10304
|
{{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 |
---|---|---|---|
31431504 |
The TOR pathway modulates cytoophidium formation in Schizosaccharomyces pombe. J Biol Chem Christos Andreadis , Lydia Hulme , Katherine Wensley , Ji-Long Liu |
2019-10-04 | - |
28281664 |
Sci Rep Charalampos Rallis , StJohn Townsend , Jürg Bähler |
2017-03-10 | - |
26771498 |
A Proteome-wide Fission Yeast Interactome Reveals Network Evolution Principles from Yeasts to Human. Cell Tommy V Vo , Jishnu Das , Michael J Meyer , Nicolas A Cordero , Nurten Akturk , Xiaomu Wei , Benjamin J Fair , Andrew G Degatano , Robert Fragoza , Lisa G Liu , Akihisa Matsuyama , Michelle Trickey , Sachi Horibata , Andrew Grimson , Hiroyuki Yamano , Minoru Yoshida , Frederick P Roth , Jeffrey A Pleiss , Yu Xia , Haiyuan Yu |
2016-01-14 | - |
28357272 |
A central role for TOR signalling in a yeast model for juvenile CLN3 disease. Microb Cell Michael E Bond , Rachel Brown , Charalampos Rallis , Jürg Bähler , Sara E Mole |
2015-11-11 | - |
23297348 |
Mol Cell Proteomics Jun-Song Chen , Matthew R Broadus , Janel R McLean , Anna Feoktistova , Liping Ren , Kathleen L Gould |
2013-05-01 | - |
21873635 |
Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium. Brief. Bioinformatics Pascale Gaudet , Michael S Livstone , Suzanna E Lewis , Paul D Thomas |
2011-09-01 | - |
16823372 |
Nat. Biotechnol. Akihisa Matsuyama , Ritsuko Arai , Yoko Yashiroda , Atsuko Shirai , Ayako Kamata , Shigeko Sekido , Yumiko Kobayashi , Atsushi Hashimoto , Makiko Hamamoto , Yasushi Hiraoka , Sueharu Horinouchi , Minoru Yoshida |
2006-07-01 |
sum3,
ers1,
SPCC126.01c,
SPCC777.03c,
gst1,
SPCC569.06,
SPCC1442.02,
SPCC645.13,
hif2,
SPCC613.08,
mde7,
SPCC663.10,
tmp1,
xap5,
spf30,
SPCC1682.09c,
rpl3702,
bio2,
SPCC4B3.06c,
fta4,
mms2,
adn3,
imt2,
ste6,
SPCC825.02,
arg1,
prp28,
tpi1,
ctr4,
SPCC663.08c,
ade6,
SPCC70.10,
SPCC338.06c,
ynd1,
alr1,
mpg1,
cnd2,
SPCC965.04c,
SPCC132.01c,
SPCC1672.11c,
SPCC1442.07c,
SPCC830.11c,
SPCC1281.06c,
nup186,
SPCC1795.10c,
skb15,
ppe1,
SPCC14G10.01,
rad16,
SPCC622.02,
set1,
mis18,
SPCC1906.02c,
urm1,
SPCC306.08c,
get4,
ura4,
sgf73,
coq3,
oca8,
ssb3,
SPCC1494.06c,
not2,
SPCC569.07,
SPCC1840.07c,
ssb2,
meu15,
SPCC1450.10c,
tim23,
SPCC1672.01,
SPCC830.06,
bis1,
vtc4,
cid2,
ipk1,
srp72,
SPCP1E11.10,
sec59,
apn1,
SPCC63.06,
lat1,
rpm1,
SPCC5E4.05c,
kap113,
SPCC13B11.04c,
SPCC757.11c,
lsm2,
mug163,
SPCC1840.09,
cox13,
SPCPB16A4.05c,
SPCC285.03,
mug112,
SPCC330.03c,
SPCC622.11,
mrpl31,
SPCC777.17c,
rpl3402,
rpb3
|
11859360 |
The genome sequence of Schizosaccharomyces pombe. Nature V Wood , R Gwilliam , M-A Rajandream , M Lyne , R Lyne , A Stewart , J Sgouros , N Peat , J Hayles , S Baker , D Basham , S Bowman , K Brooks , D Brown , S Brown , T Chillingworth , C Churcher , M Collins , R Connor , A Cronin , P Davis , T Feltwell , A Fraser , S Gentles , A Goble , N Hamlin , D Harris , J Hidalgo , G Hodgson , S Holroyd , T Hornsby , S Howarth , E J Huckle , S Hunt , K Jagels , K James , L Jones , M Jones , S Leather , S McDonald , J McLean , P Mooney , S Moule , K Mungall , L Murphy , D Niblett , C Odell , K Oliver , S O'Neil , D Pearson , M A Quail , E Rabbinowitsch , K Rutherford , S Rutter , D Saunders , K Seeger , S Sharp , J Skelton , M Simmonds , R Squares , S Squares , K Stevens , K Taylor , R G Taylor , A Tivey , S Walsh , T Warren , S Whitehead , J Woodward , G Volckaert , R Aert , J Robben , B Grymonprez , I Weltjens , E Vanstreels , M Rieger , M Schäfer , S Müller-Auer , C Gabel , M Fuchs , A Düsterhöft , C Fritzc , E Holzer , D Moestl , H Hilbert , K Borzym , I Langer , A Beck , H Lehrach , R Reinhardt , T M Pohl , P Eger , W Zimmermann , H Wedler , R Wambutt , B Purnelle , A Goffeau , E Cadieu , S Dréano , S Gloux , V Lelaure , S Mottier , F Galibert , S J Aves , Z Xiang , C Hunt , K Moore , S M Hurst , M Lucas , M Rochet , C Gaillardin , V A Tallada , A Garzon , G Thode , R R Daga , L Cruzado , J Jimenez , M Sánchez , F del Rey , J Benito , A DomÃnguez , J L Revuelta , S Moreno , J Armstrong , S L Forsburg , L Cerutti , T Lowe , W R McCombie , I Paulsen , J Potashkin , G V Shpakovski , D Ussery , B G Barrell , P Nurse , L Cerrutti |
2002-02-21 |
SPCC1235.18,
SPCC18.20,
SPCC188.14,
SPCC794.16,
new22,
tam14,
cmc2,
SPCC1235.17,
SPCC417.16,
SPCPB16A4.07,
SPCC663.18,
SPCC1672.14,
SPCC1259.16,
ost5,
new25,
tam11,
SPBC336.16,
SPBC18E5.09c,
tam10,
ymr31,
tam8,
ksh1,
tam13,
new15,
SPBPB21E7.10,
SPBPB21E7.11,
SPBC1685.17,
SPBC36.13,
SPBC713.13,
SPBP35G2.17,
cox7,
SPBC16E9.20,
new16,
SPBP8B7.32,
new14,
SPBC3E7.17,
SPBC2A9.14,
new19,
new18,
tam12,
cox20,
SPBC651.07,
SPBC32H8.15,
SPBC21B10.15,
SPBC19G7.19,
SPBC30B4.09,
SPBC32F12.17,
new17,
tam9,
new20,
SPBP23A10.17,
tam7,
SPBC13G1.16,
SPAC1399.06,
tam5,
SPAC17A5.19,
SPAC1B2.06,
tam3,
SPAC11D3.19,
SPAC25B8.20,
new8,
SPAC9G1.14,
new4,
SPAC4H3.17,
SPAC8E11.12,
SPAC959.06c,
SPAC977.18,
mzt1,
SPACUNK4.20,
SPAPB15E9.06,
SPAC1093.07,
SPAC1834.13,
cmc4,
SPAC2H10.04,
new12,
new13,
SPAC110.05,
SPAC922.09,
tam1,
SPAC343.21,
SPAPJ695.02,
spd2,
fmc1,
SPAC1071.13,
new9,
new11,
new10,
new2,
new1,
coa2,
rsa3,
SPAC959.11,
tam6,
SPAC29A4.22,
SPAC4H3.16,
prl65,
sum3,
ers1,
SPCC126.01c
|
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