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A New Method to Study Heterodimerization of Membrane Proteins and Its Application to Fibroblast Growth Factor Receptors.

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J Biol Chem2017PMID 27927983PMC5270473stubpubmedProvenance
Source
PubMed
Retrieved
Sep 8, 2026
Layer
normalized (units and labels harmonized; values unchanged)
Run
ING-CIVIC-20260908-000001
Published

Abstract

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Linked entities

Linked entities (2)

How each link was made (MeSH, dictionary, registry reference, curation…) and whether it has been validated. Candidate links are not counted in entity statistics.

Validated 2

Curated evidence

Evidence citing this paper (2)

civicProvenance
Source
CIViC — Clinical Interpretation of Variants in Cancer
Dataset
CIViC evidence items
Version
civic-2026-09-08
Retrieved
Sep 8, 2026
Layer
normalized (units and labels harmonized; values unchanged)
Evidence
expert curation
License
CC0 1.0
PMID
27927983
Run
ING-CIVIC-20260908-000001
Open at source
CuratedShowing 1–2 of 2 evidence items · levels, directions and significance as curated at the source; each row links to its CIViC record.
TherapyCancerTypeLevelDirection · significanceRating (1–5)StatusEvidenceSource
FGFR3 A391E1
(functional)—UNRESOLVEDFunctionalDSupports Gain Of Function3submitted
EID10395

While receptor tyrosine kinases (RTKs) like FGFR3 form both homodimers and heterodimers (often in the same family), heterodimerization of RTKs is considered to be a method of greater receptor activati… (full text at CIViC)

PMID 27927983 · Del Piccolo et al., 2017 · Open in CIViC

civic
FGFR3 G380R1
(functional)—UNRESOLVEDFunctionalDSupports Gain Of Function3accepted
EID10396

While receptor tyrosine kinases (RTKs) like FGFR3 form both homodimers and heterodimers (often in the same family), heterodimerization of RTKs is considered to be a method of greater receptor activati… (full text at CIViC)

PMID 27927983 · Del Piccolo et al., 2017 · Open in CIViC

civic