Arabidopsis thaliana protein interaction network
Laboratório de Biologia Integrativa e Sistêmica (LaBIS)
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AT5G20490 - ( XIK motor/ protein binding )

10 Proteins interacs with AT5G20490
LocusMethodFSW Cellular Compartment Classification (C3)Description
AT1G12310

Predicted

two hybrid

FSW = 0.0445

Unknown

CALMODULIN PUTATIVE
AT4G08320

Predicted

two hybrid

FSW = 0.0437

Unknown

TETRATRICOPEPTIDE REPEAT (TPR)-CONTAINING PROTEIN
AT4G09300

Predicted

two hybrid

FSW = 0.1025

Unknown

FUNCTIONS IN MOLECULAR_FUNCTION UNKNOWN INVOLVED IN BIOLOGICAL_PROCESS UNKNOWN LOCATED IN CELLULAR_COMPONENT UNKNOWN EXPRESSED IN FLOWER EXPRESSED DURING PETAL DIFFERENTIATION AND EXPANSION STAGE CONTAINS INTERPRO DOMAIN/S LISH DIMERISATION MOTIF SUBGROUP (INTERPROIPR013720) CTLH C-TERMINAL TO LISH MOTIF (INTERPROIPR006595) LISH DIMERISATION MOTIF (INTERPROIPR006594) CT11-RANBPM (INTERPROIPR013144) BEST ARABIDOPSIS THALIANA PROTEIN MATCH IS UNKNOWN PROTEIN (TAIRAT1G611506) HAS 369 BLAST HITS TO 369 PROTEINS IN 108 SPECIES ARCHAE - 0 BACTERIA - 2 METAZOA - 175 FUNGI - 55 PLANTS - 90 VIRUSES - 0 OTHER EUKARYOTES - 47 (SOURCE NCBI BLINK)
AT5G03530

Predicted

two hybrid

FSW = 0.0220

Unknown

RABC2A (RAB GTPASE HOMOLOG C2A) GTP BINDING / GTP-DEPENDENT PROTEIN BINDING / MYOSIN XI TAIL BINDING
AT3G57350

Predicted

two hybrid

FSW = 0.1170

Unknown

FUNCTIONS IN MOLECULAR_FUNCTION UNKNOWN INVOLVED IN TRANSPORT LOCATED IN NUCLEAR PORE CONTAINS INTERPRO DOMAIN/S NUCLEOPORIN INTERACTING COMPONENT NUP93/NIC96 (INTERPROIPR007231) BEST ARABIDOPSIS THALIANA PROTEIN MATCH IS NUCLEOPORIN INTERACTING COMPONENT FAMILY PROTEIN (TAIRAT2G416201) HAS 234 BLAST HITS TO 230 PROTEINS IN 99 SPECIES ARCHAE - 0 BACTERIA - 3 METAZOA - 124 FUNGI - 76 PLANTS - 29 VIRUSES - 0 OTHER EUKARYOTES - 2 (SOURCE NCBI BLINK)
AT5G21274

Predicted

two hybrid

FSW = 0.0166

Unknown

CAM6 (CALMODULIN 6) CALCIUM ION BINDING
AT4G15930

Predicted

in vivo

in vitro

two hybrid

FSW = 0.0144

Unknown

MICROTUBULE MOTOR
AT5G46025

Predicted

two hybrid

in vitro

two hybrid

FSW = 0.0585

Unknown

RAS-RELATED GTP-BINDING FAMILY PROTEIN
AT1G54560Predicted

Enriched domain pair

Phylogenetic profile method

FSW = 0.0330

Unknown

XIE MOTOR/ PROTEIN BINDING
AT4G33200

Predicted

Enriched domain pair

Phylogenetic profile method

FSW = 0.1838

Unknown

XI-I MOTOR/ PROTEIN BINDING

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Experimental: This means that the indicated PPI was experimentally demonstrated using Arabidopsis thaliana proteins as model of study. The experiment indicated links to the publication of which this interaction was annotated from
Predicted: The indicated PPI was proposed based on ortholgs studies. The experiment indicated links to the publication of the orthologous PPI was annotated from

FSW

FSW is the Functional Similarity Weight. It represents the proportion of interaction partners that two proteins have in common

Learn more - FSWeight top ranked cut offs

C3

Class A: The PPI is a direct evidence (experimental), the subcellular location was experimentally demonstrated and both, target and source, were indicated as expressed in same cellular compartment
Class B: The PPI is a direct evidence (experimental), the subcellular location was experimentally demonstrated but both, target and source, were indicated as expressed in different cellular compartment
Class C: Same as Class A but the PPI is predicted
Class D: Same as Class A but subcellular location was predicted. P(exp|pred) indicates the probability of this particular predicted location be experimentally demonstrated given all data available on AtPINDB
Unknown: There is no available data to calculate the C3 or the data does not fit onto any class previously described

PEP

PEP is the posterior probability of this particular PPI be experimentally demonstrated once it was predicted. For this release p = 0.0030. If they share same cell compartment p = 0.0029

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How to cite

If you find AtPIN interesting and want to use it in your work please cite us

AtPIN: Arabidopsis thaliana Protein Interaction Network
Marcelo M Brandao, Luiza L Dantas and Marcio C Silva-Filho
BMC Bioinformatics 2009, 10:454

DOI:1471-2105/10/454