Inferred: -
Original protein 1: Q9NQU5
Taxonomy: human
Experimental role: -
Biological role participant: -
Participant detection method: -
Host: -
Interaction detection method: affinity chromatography technology
Source: Biogrid
Original protein 2: P63000
Taxonomy: human
Experimental role: -
Biological role participant: -
Participant detection method: -
PMID: 25301945
Interaction type: physical association
Evidence: HT
Inferred: -
Original protein 1: Q9NQU5
Taxonomy: human
Experimental role: -
Biological role participant: -
Participant detection method: -
Host: -
Interaction detection method: pull down
Source: Biogrid
Original protein 2: P63000
Taxonomy: human
Experimental role: -
Biological role participant: -
Participant detection method: -
PMID: 11773441
Interaction type: direct interaction
Evidence: LT
Inferred: -
Original protein 1: Q9NQU5
Taxonomy: human
Experimental role: -
Biological role participant: -
Participant detection method: -
Host: -
Interaction detection method: pull down
Source: Biogrid
Original protein 2: P63000
Taxonomy: human
Experimental role: -
Biological role participant: -
Participant detection method: -
PMID: 26375402
Interaction type: direct interaction
Evidence: LT
Inferred: -
Original protein 1: Q9NQU5
Taxonomy: human
Experimental role: bait
Biological role participant: unspecified role
Participant detection method: sequence tag identification
Host: human-Flp-In T-REx 293
Interaction detection method: pull down
Source: Intact
Original protein 2: P63000
Taxonomy: human
Experimental role: prey
Biological role participant: unspecified role
Participant detection method: sequence tag identification
PMID: 32707033
Interaction type: association
Evidence: HT
Inferred: -
Original protein 1: Q9NQU5
Taxonomy: -
Experimental role: -
Biological role participant: -
Participant detection method: -
Host: -
Interaction detection method: -
Source: STRING [RAC1_HUMAN] [PAK6_HUMAN]
Original protein 2: P63000
Taxonomy: -
Experimental role: -
Biological role participant: -
Participant detection method: -
PMID: -
Interaction type: -
Evidence: Computational