Type | Description |
---|---|
Definition | hypothetical protein |
Date | Results | Publications |
---|---|---|
2012-11-17 10:46:00 | ACS7 is turned over in a 26S proteasome-dependent manner and that degradation of ACS7 requires the E3 ligase XBAT32. | 22339729 |
2011-09-03 10:19:00 | XBAT32 may play a role in ethylene mediated response to abiotic stresses. | 21051934 |
2010-10-30 10:07:00 | XBAT32 plays an essential role in ethylene biosynthesis as a negative regulator of ACS protein abundance. | 20511490 |
2007-04-16 15:48:00 | XBAT32 is a novel ubiquitin ligase required for lateral root initiation. Mutation in XBAT32 causes a number of phenotypes including severe defects in lateral root production. XBAT32 gene is expressed abundantly in vascular system of the primary root. | 15584963 |
Type | IDs |
---|---|
Synonymous | MRI1.10, MRI1_10, XB3 ortholog 2 in Arabidopsis thaliana |
Gene |
UniProtKB-ID:
XB32_ARATH,
A0A178UH83_ARATH
UniprotKB:
Q6NLQ8,
A0A178UH83
UniParc:
UPI00002537D9
EMBL:
BT011688,
LUHQ01000005,
AB018118,
CP002688,
BT012272
EnsemblGenome:
AT5G57740
KO:
ath:AT5G57740
|
Nucleutide sequences |
EMBL-CDS:
BAB09592.1,
AAS49051.1,
AAS76759.1,
AED96944.1,
OAO93045.1
Gene_ORFName:
MRI1.10
EnsemblGenome_TRS:
AT5G57740.1
|
Protein sequencees |
EnsemblGenome_PRO:
AT5G57740.1
RefSeq:
NP_200582.3
|
Others |
UniRef100:
UniRef100_Q6NLQ8
UniRef90:
UniRef90_Q6NLQ8
UniRef50:
UniRef50_Q6NLQ8
UniGene:
At.29316
|
{{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 |
---|---|---|---|
22339729 |
Plant J. Wendy J Lyzenga , Judith K Booth , Sophia L Stone |
2012-07-01 |
ACS7,
XBAT32
|
21952135 |
Arabidopsis G-protein interactome reveals connections to cell wall carbohydrates and morphogenesis. Mol. Syst. Biol. Karsten Klopffleisch , Nguyen Phan , Kelsey Augustin , Robert S Bayne , Katherine S Booker , Jose R Botella , Nicholas C Carpita , Tyrell Carr , Jin-Gui Chen , Thomas Ryan Cooke , Arwen Frick-Cheng , Erin J Friedman , Brandon Fulk , Michael G Hahn , Kun Jiang , Lucia Jorda , Lydia Kruppe , Chenggang Liu , Justine Lorek , Maureen C McCann , Antonio Molina , Etsuko N Moriyama , M Shahid Mukhtar , Yashwanti Mudgil , Sivakumar Pattathil , John Schwarz , Steven Seta , Matthew Tan , Ulrike Temp , Yuri Trusov , Daisuke Urano , Bastian Welter , Jing Yang , Ralph Panstruga , Joachim F Uhrig , Alan M Jones |
2011-01-01 |
AT3G54826,
YAB2,
AT3G23450,
AT2G01140,
EMB975,
AT2G02510,
AT2G02570,
CDC48B,
SOT12,
AT2G03780,
XTH4,
SERK5,
KCS9,
ROC3,
EMB2762,
GUT15,
AT2G18860,
SLP3,
AT2G19270,
AT2G19460,
ASHR2,
PSB29,
BPC4,
AT2G21580,
RD2,
AT2G22880,
AT2G23070,
AT2G23090,
ALDH11A3,
AT2G24420,
GP ALPHA 1,
ARD3,
AXS1,
CKS2,
CSD2,
AT2G29020,
ftsh3,
TIM10,
PSBW,
DS2,
AT2G32240,
VAMP725,
SAR1,
AT2G33220,
LHB1B2,
AT2G34585,
LOS2,
AT2G37190,
SLT1,
LTP2,
AT2G38870,
HSPRO2,
CZF1,
CYP98A3,
CAMBP25,
VOZ2,
ROL5,
AT2G44310,
ATCS,
RAB6A,
PVA12,
AT2G45680,
BAG6,
AGP16,
PI4K GAMMA 4,
AT2G46535,
AT2G46550,
AT2G47090,
PHR2,
AT3G03980,
AT3G03990,
AT3G04840,
AT3G05430,
AT3G05500,
AT3G05920,
BPM2,
AT3G07020,
OBE1,
S6K2,
PK1,
AT3G09100,
MT2A,
AT3G09860,
FER2,
AT3G11850,
AT3G12260,
HCHIB,
AT3G13740,
ATBFRUCT1,
RSH2,
AT3G14160,
ESM1,
AT3G15356,
MT3,
PLDALPHA1,
NAI2,
AT3G16530,
RR1,
JAZ3
|
21051934 |
Further analysis of XBAT32, an Arabidopsis RING E3 ligase, involved in ethylene biosynthesis. Plant Signal Behav Madhulika E Prasad , Sophia L Stone |
2010-11-01 | - |
20511490 |
Plant Physiol. Madhulika E Prasad , Andrew Schofield , Wendy Lyzenga , Hongxia Liu , Sophia L Stone |
2010-08-01 |
ACS4,
ACS7,
XBAT32
|
15584963 |
The ubiquitin ligase XBAT32 regulates lateral root development in Arabidopsis. Plant J. Lisa A Nodzon , Wei-Hui Xu , Yongsheng Wang , Li-Ya Pi , Pranjib K Chakrabarty , Wen-Yuan Song |
2004-12-01 |
XBAT32
|
11130714 |
Sequence and analysis of chromosome 5 of the plant Arabidopsis thaliana. Nature S Tabata , T Kaneko , Y Nakamura , H Kotani , T Kato , E Asamizu , N Miyajima , S Sasamoto , T Kimura , T Hosouchi , K Kawashima , M Kohara , M Matsumoto , A Matsuno , A Muraki , S Nakayama , N Nakazaki , K Naruo , S Okumura , S Shinpo , C Takeuchi , T Wada , A Watanabe , M Yamada , M Yasuda , S Sato , M de la Bastide , E Huang , L Spiegel , L Gnoj , A O'Shaughnessy , R Preston , K Habermann , J Murray , D Johnson , T Rohlfing , J Nelson , T Stoneking , K Pepin , J Spieth , M Sekhon , J Armstrong , M Becker , E Belter , H Cordum , M Cordes , L Courtney , W Courtney , M Dante , H Du , J Edwards , J Fryman , B Haakensen , E Lamar , P Latreille , S Leonard , R Meyer , E Mulvaney , P Ozersky , A Riley , C Strowmatt , C Wagner-McPherson , A Wollam , M Yoakum , M Bell , N Dedhia , L Parnell , R Shah , M Rodriguez , L H See , D Vil , J Baker , K Kirchoff , K Toth , L King , A Bahret , B Miller , M Marra , R Martienssen , W R McCombie , R K Wilson , G Murphy , I Bancroft , G Volckaert , R Wambutt , A Düsterhöft , W Stiekema , T Pohl , K D Entian , N Terryn , N Hartley , E Bent , S Johnson , S A Langham , B McCullagh , J Robben , B Grymonprez , W Zimmermann , U Ramsperger , H Wedler , K Balke , E Wedler , S Peters , M van Staveren , W Dirkse , P Mooijman , R K Lankhorst , T Weitzenegger , G Bothe , M Rose , J Hauf , S Berneiser , S Hempel , M Feldpausch , S Lamberth , R Villarroel , J Gielen , W Ardiles , O Bents , K Lemcke , G Kolesov , K Mayer , S Rudd , H Schoof , C Schueller , P Zaccaria , H W Mewes , M Bevan , P Fransz , Kazusa DNA Research Institute , Cold Spring Harbor and Washington University in St Louis Sequencing Consortium , European Union Arabidopsis Genome Sequencing Consortium |
2000-12-14 |
AT5G10605,
AT5G08305,
AT5G19025,
AT5G67265,
AT5G53635,
AT5G60335,
AT5G62865,
AT5G28442,
AT5G04045,
AT5G07225,
MIR162A,
AT5G09225,
AT5G10625,
AT5G10745,
AT5G18475,
AT5G18525,
AT5G18636,
AT5G20045,
AGP41,
AT5G26805,
AT5G28237,
AT5G35732,
AT5G35737,
AT5G37478,
AT5G42235,
AT5G42825,
AT5G43185,
AT5G44005,
AT5G44565,
AT5G45275,
AT5G45660,
AT5G48205,
AT5G48335,
HINT3,
AT5G48657,
AT5G49015,
AT5G52547,
AT5G55565,
AT5G57565,
AT5G66005,
AT5G67245,
AT5G08055,
AT5G06043,
AT5G01881,
AT5G19172,
AT5G19175,
AT5G16486,
AT5G03795,
AT5G03406,
AT5G22791,
AT5G16453,
AT5G23212,
AT5G19473,
AT5G19485,
AT5G19315,
AT5G08505,
AT5G07740,
AT5G23035,
AT5G18403,
AT5G18407,
AT5G08315,
AT5G04347,
AT5G24318,
AT5G26622,
AT5G27495,
AT5G28288,
AT5G32460,
AT5G32619,
AT5G35050,
AT5G35195,
AT5G35660,
AT5G35926,
AT5G36001,
AT5G36228,
AT5G36300,
AT5G37473,
AT5G37474,
LCR58,
AT5G38344,
SPH8,
AT5G39365,
AT5G40405,
AT5G42146,
AT5G42223,
AT5G42232,
LCR57,
LCR28,
AT5G43285,
AT5G43401,
AT5G43513,
AT5G43518,
AT5G43525,
AT5G44973,
SCRL27,
AT5G46871,
AT5G46873,
AT5G46874,
AT5G46877,
LCR20
|
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