Gene: Os11g0113100

General Information

Structural Information

  • Species Oryza sativa ssp. japonica
  • Gene Identifier Os11g0113100
  • Transcript Identifier Os11t0113100-01
  • Gene Type Coding gene
  • Location chr11 : 603190-606689 : negative

Gene Family Information

  • ID HOM05D000992
  • #Genes/#Species 608/99
  • Phylogenetic origin

Gene Duplication Information

Labels

Identifiers

  • tid Os11t0113100-01
  • MSU-ID LOC_Os11g02180.1
  • uniprot Q2RBF6

Descriptions

  • Description Protein-tyrosine phosphatase, dual specificity domain containing protein.
  • Loading (ortholog descriptions from ath)...

Functional Annotation

Biological Process

GO termEvidence(s)Provider(s)DescriptionSource(s)
GO:0006470
IEA
GOA Databaseprotein dephosphorylation
GO:0006470
IEA
InterProprotein dephosphorylation
GO:0016311
IEA
GOA Databasedephosphorylation
GO:0016311
IEA
InterProdephosphorylation
GO:0046838
IBA
GOA Databasephosphorylated carbohydrate dephosphorylation
GO:0005983
IBA
GOA Databasestarch catabolic process

Molecular Function

GO termEvidence(s)Provider(s)DescriptionSource(s)
GO:0016791
IEA
GOA Databasephosphatase activity
GO:0008138
IEA
GOA Databaseprotein tyrosine/serine/threonine phosphatase activity
GO:0008138
IEA
InterProprotein tyrosine/serine/threonine phosphatase activity
GO:2001070
IBA
GOA Databasestarch binding
GO:0019203
IBA
GOA Databasecarbohydrate phosphatase activity
GO:0005515
ISO
PLAZA Homology (enrichment)protein binding HOM05D000992
GO:0050308
ISO
PLAZA Integrative Orthologysugar-phosphatase activity AT3G10940

Cellular Component

GO termEvidence(s)Provider(s)DescriptionSource(s)
GO:0009507
IBA
GOA Databasechloroplast

Color Legend

Experimental Evidence
Computational Reviewed Evidence
Electronic Evidence
GO Sources: Primary Orthology Homology
Show redundant parents:
InterPro Description
IPR029021 Protein-tyrosine phosphatase-like
IPR020422 Dual specificity protein phosphatase domain
IPR000340 Dual specificity phosphatase, catalytic domain
Mapman id Description
3.2.3.2.2 Carbohydrate metabolism.starch metabolism.degradation.dephosphorylation.phosphoglucan phosphatase (LSF2)