Type | Description |
---|---|
Definition | O-antigen ligase WaaL |
Date | Results | Publications |
---|---|---|
2019-07-13 12:25:00 | Both E. coli and P. aeruginosa WaaL proteins share similar membrane topology. P. aeruginosa WaaL shares similar functional properties with E. coli WaaL and E. coli WaaL may adopt a functional dimer conformation. | 30047569 |
2017-12-02 10:59:00 | use of the waaLmotABmotCD mutant revealed that loss of motility confers resistance to phagocytosis regardless of the smooth or rough LPS phenotype. These findings reveal how the O-antigen of P. aeruginosa can influence bacterial clearance during infection and expand our current knowledge about the impact of bacterial phenotypic changes during chronic infection. | 29059582 |
2012-05-12 11:50:00 | The WaaL O-antigen lipopolysaccharide ligase has features in common with metal ion-independent inverting glycosyltransferases. | 21983211 |
2011-08-13 10:22:00 | WaaL is an integral inner membrane protein with 12 transmembrane domains. | 20824106 |
2010-01-21 00:00:00 | Data show that WaaL of Pseudomonas aeruginosa utilizes ATP in in vitro ligation of O antigen onto lipid A-core. | 17697256 |
Type | IDs |
---|---|
Gene |
UniProtKB-ID:
PA99_PSEAE
UniprotKB:
Q9HUG6
UniParc:
UPI00000C5EBC
EMBL:
AE004091
EnsemblGenome:
PA4999
KO:
pae:PA4999
|
Nucleutide sequences |
EMBL-CDS:
AAG08384.1
EnsemblGenome_TRS:
AAG08384
|
Protein sequencees |
EnsemblGenome_PRO:
AAG08384
RefSeq:
NP_253686.1
|
Others |
UniRef100:
UniRef100_Q9HUG6
UniRef90:
UniRef90_Q9HUG6
UniRef50:
UniRef50_Q9HUG6
|
{{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 |
---|---|---|---|
30047569 |
Mol. Microbiol. Xiang Ruan , Julia Monjarás Feria , Mohamad Hamad , Miguel A Valvano |
2018-10-01 | - |
29059582 |
Mol. Immunol. Sally Demirdjian , Kristin Schutz , Matthew J Wargo , Joseph S Lam , Brent Berwin |
2017-12-01 | - |
23614028 |
Variation in the complex carbohydrate biosynthesis loci of Acinetobacter baumannii genomes. PLoS ONE Johanna J Kenyon , Ruth M Hall |
2013-01-01 |
waaL,
waaL
|
21983211 |
Glycobiology Xiang Ruan , David E Loyola , Cristina L Marolda , José M Perez-Donoso , Miguel A Valvano |
2012-02-01 |
waaL
|
20824106 |
mBio Salim T Islam , Véronique L Taylor , Meng Qi , Joseph S Lam |
2010-08-24 | - |
18978025 |
Nucleic Acids Res. Geoffrey L Winsor , Thea Van Rossum , Raymond Lo , Bhavjinder Khaira , Matthew D Whiteside , Robert E W Hancock , Fiona S L Brinkman |
2009-01-01 |
PA2755a,
PA4636a,
PA0032a,
PA0041a,
PA0103a,
PA0306a,
PA0367a,
PA0451a,
PA0701a,
PA0736a,
PA0788a,
PA0951a,
PA1019a,
PA1052a,
PA1112a,
PA1112b,
PA1424a,
PA1428a,
PA1483a,
PA1578a,
PA1643a,
PA1797a,
PA1833a,
PA1837a,
PA1866a,
PA2118a,
PA2142a,
PA2173a,
PA2312a,
PA2559a,
PA2746a,
PA2747a,
PA2750a,
PA2754a,
PA2763a,
PA2772a,
PA3089a,
PA3303a,
PA3403a,
PA3440a,
PA3574a,
PA3733a,
PA3865a,
PA3886a,
PA3963a,
PA3969a,
PA4027a,
PA4108a,
PA4145a,
PA4313a,
PA4360a,
PA4635a,
PA4690a,
PA5183a,
PA5252a,
PA5440a,
PA0457.1,
pyoS5,
PA1021,
PA0123,
PA0891,
PA1020,
PA0440,
PA0007,
lptA,
PA0116,
PA0119,
PA1159,
PA0439,
codB,
PA0878,
PA2296,
PA0512,
PA0118,
codA,
PA1734,
PA0848,
PA1168,
cmpX,
PA0436,
PA0699,
PA0305,
PA0753,
PA0049,
PA1870,
PA0628,
PA1831,
PA0624,
PA0708,
PA0435,
PA0434,
flgB,
arsC,
PA5108,
PA5109,
PA0978,
PA0919,
PA5340,
PA5341
|
17697256 |
WaaL of Pseudomonas aeruginosa utilizes ATP in in vitro ligation of O antigen onto lipid A-core. Mol. Microbiol. Priyanka D Abeyrathne , Joseph S Lam |
2007-09-01 |
waaL
|
17015649 |
J. Bacteriol. Ryan T Cirz , Bryan M O'Neill , Jennifer A Hammond , Steven R Head , Floyd E Romesberg |
2006-10-01 |
PA2755a,
PA4636a,
PA0032a,
PA0041a,
PA0103a,
PA0306a,
PA0367a,
PA0451a,
PA0701a,
PA0736a,
PA0788a,
PA0951a,
PA1019a,
PA1052a,
PA1112a,
PA1112b,
PA1424a,
PA1428a,
PA1483a,
PA1578a,
PA1643a,
PA1797a,
PA1833a,
PA1837a,
PA1866a,
PA2118a,
PA2142a,
PA2173a,
PA2312a,
PA2559a,
PA2746a,
PA2747a,
PA2750a,
PA2754a,
PA2763a,
PA2772a,
PA3089a,
PA3303a,
PA3403a,
PA3440a,
PA3574a,
PA3733a,
PA3865a,
PA3886a,
PA3963a,
PA3969a,
PA4027a,
PA4108a,
PA4145a,
PA4313a,
PA4360a,
PA4635a,
PA4690a,
PA5183a,
PA5252a,
PA5440a,
PA0457.1,
pyoS5,
PA1021,
PA0123,
PA0891,
PA1020,
PA0440,
PA0007,
lptA,
PA0116,
PA0119,
PA1159,
PA0439,
codB,
PA0878,
PA2296,
PA0512,
PA0118,
codA,
PA1734,
PA0848,
PA1168,
cmpX,
PA0436,
PA0699,
PA0305,
PA0753,
PA0049,
PA1870,
PA0628,
PA1831,
PA0624,
PA0708,
PA0435,
PA0434,
flgB,
arsC,
PA5108,
PA5109,
PA0978,
PA0919,
PA5340,
PA5341
|
16030221 |
Cystic fibrosis sputum supports growth and cues key aspects of Pseudomonas aeruginosa physiology. J. Bacteriol. Kelli L Palmer , Lauren M Mashburn , Pradeep K Singh , Marvin Whiteley |
2005-08-01 |
PA2755a,
PA4636a,
PA0032a,
PA0041a,
PA0103a,
PA0306a,
PA0367a,
PA0451a,
PA0701a,
PA0736a,
PA0788a,
PA0951a,
PA1019a,
PA1052a,
PA1112a,
PA1112b,
PA1424a,
PA1428a,
PA1483a,
PA1578a,
PA1643a,
PA1797a,
PA1833a,
PA1837a,
PA1866a,
PA2118a,
PA2142a,
PA2173a,
PA2312a,
PA2559a,
PA2746a,
PA2747a,
PA2750a,
PA2754a,
PA2763a,
PA2772a,
PA3089a,
PA3303a,
PA3403a,
PA3440a,
PA3574a,
PA3733a,
PA3865a,
PA3886a,
PA3963a,
PA3969a,
PA4027a,
PA4108a,
PA4145a,
PA4313a,
PA4360a,
PA4635a,
PA4690a,
PA5183a,
PA5252a,
PA5440a,
PA0457.1,
pyoS5,
PA1021,
PA0123,
PA0891,
PA1020,
PA0440,
PA0007,
lptA,
PA0116,
PA0119,
PA1159,
PA0439,
codB,
PA0878,
PA2296,
PA0512,
PA0118,
codA,
PA1734,
PA0848,
PA1168,
cmpX,
PA0436,
PA0699,
PA0305,
PA0753,
PA0049,
PA1870,
PA0628,
PA1831,
PA0624,
PA0708,
PA0435,
PA0434,
flgB,
arsC,
PA5108,
PA5109,
PA0978,
PA0919,
PA5340,
PA5341
|
15995206 |
J. Bacteriol. Prabhakar Salunkhe , Catherine H M Smart , J Alun W Morgan , Stavroula Panagea , Martin J Walshaw , C Anthony Hart , Robert Geffers , Burkhard Tümmler , Craig Winstanley |
2005-07-01 |
PA2755a,
PA4636a,
PA0032a,
PA0041a,
PA0103a,
PA0306a,
PA0367a,
PA0451a,
PA0701a,
PA0736a,
PA0788a,
PA0951a,
PA1019a,
PA1052a,
PA1112a,
PA1112b,
PA1424a,
PA1428a,
PA1483a,
PA1578a,
PA1643a,
PA1797a,
PA1833a,
PA1837a,
PA1866a,
PA2118a,
PA2142a,
PA2173a,
PA2312a,
PA2559a,
PA2746a,
PA2747a,
PA2750a,
PA2754a,
PA2763a,
PA2772a,
PA3089a,
PA3303a,
PA3403a,
PA3440a,
PA3574a,
PA3733a,
PA3865a,
PA3886a,
PA3963a,
PA3969a,
PA4027a,
PA4108a,
PA4145a,
PA4313a,
PA4360a,
PA4635a,
PA4690a,
PA5183a,
PA5252a,
PA5440a,
PA0457.1,
pyoS5,
PA1021,
PA0123,
PA0891,
PA1020,
PA0440,
PA0007,
lptA,
PA0116,
PA0119,
PA1159,
PA0439,
codB,
PA0878,
PA2296,
PA0512,
PA0118,
codA,
PA1734,
PA0848,
PA1168,
cmpX,
PA0436,
PA0699,
PA0305,
PA0753,
PA0049,
PA1870,
PA0628,
PA1831,
PA0624,
PA0708,
PA0435,
PA0434,
flgB,
arsC,
PA5108,
PA5109,
PA0978,
PA0919,
PA5340,
PA5341
|
排名 | 科研单位 | 文献 |
---|---|---|
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排名 | 研究人员 | 文献 |
---|---|---|
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目前还没有研究热点人员