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TAIR:AT4G27520.1

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Contents

Species (Taxon ID) Arabidopsis thaliana (thale cress) (taxon:3702)
Gene Name(s) AT4G27520.1 ( synonyms: AT4G27520, T29A15.10, T29A15_10 )
Protein Name(s) No Information Provided.
External Links
TAIR gene:3439748

Annotations

Qualifier GO ID GO term name Reference(s) Evidence Code with/from Aspect Notes Status
GO:0005507

copper ion binding

TAIR:AnalysisReference:501730468

IEA: Inferred from Electronic Annotation

INTERPRO:IPR003245

F

From TAIR

GO:0005773

vacuole

TAIR:Publication:501714874
PMID:15539469[1]

IDA: Inferred from Direct Assay

C

From TAIR

GO:0009055

electron carrier activity

TAIR:AnalysisReference:501730468

IEA: Inferred from Electronic Annotation

INTERPRO:IPR003245

F

From TAIR

GO:0009507

chloroplast

TAIR:Publication:501712079
PMID:15028209[2]

IDA: Inferred from Direct Assay

C

From TAIR

GO:0009507

chloroplast

TAIR:Publication:501724486
PMID:18431481[3]

IDA: Inferred from Direct Assay

C

From TAIR

GO:0046658

anchored to plasma membrane

TAIR:Publication:501706978
PMID:12805588[4]

IDA: Inferred from Direct Assay

C

From TAIR

GO:0048046

apoplast

TAIR:Publication:501725189
PMID:18538804[5]

IDA: Inferred from Direct Assay

C

From TAIR


Notes

References

See Help:References for how to manage references in GONUTS.
  1. Carter C et al. (2004) The vegetative vacuole proteome of Arabidopsis thaliana reveals predicted and unexpected proteins. Plant Cell 16: 3285-303 PubMed GONUTS page
  2. Kleffmann T et al. (2004) The Arabidopsis thaliana chloroplast proteome reveals pathway abundance and novel protein functions. Curr Biol 14: 354-62 PubMed GONUTS page
  3. Zybailov B et al. (2008) Sorting signals, N-terminal modifications and abundance of the chloroplast proteome. PLoS One 3: e1994 PubMed GONUTS page
  4. Borner GH et al. (2003) Identification of glycosylphosphatidylinositol-anchored proteins in Arabidopsis. A proteomic and genomic analysis. Plant Physiol 132: 568-77 PubMed GONUTS page
  5. Bindschedler LV et al. (2008) Hydroponic isotope labelling of entire plants (HILEP) for quantitative plant proteomics; an oxidative stress case study. Phytochemistry 69: 1962-72 PubMed GONUTS page
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