STIFDB - Entry Name : AT4G38510

Stress Signals involved in

 COLD  DEHYDRATION 

STIFDB Provides Data in 2 levels:



Gene Description : AT4G38510

Locus IdentifierGene Model NameGene Model DescriptionGene Model Type
AT4G38510AT4G38510.1(VACUOLAR ATP SYNTHASE SUBUNIT B2) hydrogen ion transporting ATP synthase, rotational mechanism similar to (VACUOLAR ATP SYNTHASE SUBUNIT B3), ATP binding / hydrogen ion transporting ATP synthase, rotational mechanism / hydrogen ion transporting ATPase, rotational mechanism / hydrogen-exporting ATPase, phosphorylative mechanism [Arabidopsis thaliana] (TAIR:AT1G20260.2) similar to (VACUOLAR ATP SYNTHASE SUBUNIT B1), hydrogen ion transporting ATP synthase, rotational mechanism [Arabidopsis thaliana] (TAIR:AT1G76030.1) similar to Vacuolar ATP synthase subunit B isoform 2 (V-ATPase B subunit 2) (Vacuolar proton pump B subunit 2) (GB:Q40079) similar to vacuolar ATPase subunit B [Mesembryanthemum crystallinum] (GB:CAD27443.1) similar to vacuolar H+-ATPase subunit B [Zostera marina] (GB:BAF38479.1) contains InterPro domain ATPase, F1/V1/A1 complex, alpha/beta subunit, N-terminal (InterPro:IPR004100) contains InterPro domain ATPase, F1/V1/A1 complex, alpha/beta subunit, nucleotide-binding (InterPro:IPR000194) contains InterPro domain ATPase, V1 complex, subunit B (InterPro:IPR005723) contains InterPro domain ATPase, F1/V1/A1 complex, alpha/beta subunit, C-terminal (InterPro:IPR000793)


Gene Ontology Data from TAIR : AT4G38510

GO Category GO Annotation Type GO ID GO Evidence Type References
Cellular Compartmentproton-transporting two-sector ATPase complexGO:0016469 IEAAnalysisReference:501724250
Biological ProcessATP synthesis coupled proton transportGO:0015986 IEAAnalysisReference:501724250
Molecular Functionhydrogen ion transporting ATP synthase activity, rotational mechanismGO:0046933 ISSCommunication:501714663
Cellular CompartmentcytoplasmGO:0005737 IEAAnalysisReference:501724250
Cellular CompartmentcytoplasmGO:0005737 IEAAnalysisReference:501724250
Biological Processenergy coupled proton transport, against electrochemical gradientGO:0015988 IEAAnalysisReference:501724250
Cellular Compartmentproton-transporting two-sector ATPase complexGO:0016469 IEAAnalysisReference:501724250
Biological ProcessATP synthesis coupled proton transportGO:0015986 IEAAnalysisReference:501724250
Biological Processenergy coupled proton transport, against electrochemical gradientGO:0015988 IEAAnalysisReference:501724250
Biological Processenergy coupled proton transport, against electrochemical gradientGO:0015988 IEAAnalysisReference:501724250
Cellular Compartmentproton-transporting two-sector ATPase complexGO:0016469 IEAAnalysisReference:501724250
Molecular Functionhydrogen ion transporting ATP synthase activity, rotational mechanismGO:0046933 ISSCommunication:501714663
Molecular Functionhydrogen ion transporting ATP synthase activity, rotational mechanismGO:0046933 ISSCommunication:501714663
Biological ProcessATP synthesis coupled proton transportGO:0015986 IEAAnalysisReference:501724250
Biological Processenergy coupled proton transport, against electrochemical gradientGO:0015988 IEAAnalysisReference:501724250
Cellular Compartmentproton-transporting two-sector ATPase complexGO:0016469 IEAAnalysisReference:501724250
Molecular Functionhydrogen ion transporting ATP synthase activity, rotational mechanismGO:0046933 ISSCommunication:501714663
Cellular CompartmentcytoplasmGO:0005737 IEAAnalysisReference:501724250
Biological ProcessATP synthesis coupled proton transportGO:0015986 IEAAnalysisReference:501724250
Cellular CompartmentcytoplasmGO:0005737 IEAAnalysisReference:501724250
    Biological Process     Molecular Function     Cellular Compartment

Click here for Guide to GO Evidence Codes



Orthologs

Gene IdSorghum bicolorZea maysGlycine Max
AT4G38510Sb04g007800GRMZM2G181151GLYMA20G24070

 
 
           

Contact :

Prof. R. Sowdhamini

STIFDB TEAM :

Prof. R. Sowdhamini | Shameer Khader
Mahantesha Naika B. N. | Oommen K. M.

Last Updated :

15th Oct, 2012