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King's College London

An optical proteomic profile of the HER2 family in breast tumours and the effect of exposure to tyrosine kinase inhibitors

Abstract

dc:description.abstract

My hypothesis is that delineation of the effects of HER2-targeted therapy with the tyrosine kinase inhibitor (TKI) lapatinib, in vitro, and elucidation of the ensuing conformational changes may help understand the molecular activity of lapatinib and elucidate mechanisms of resistance. Clinical translation of this knowledge may help to improve performance of current biopsy-derived biomarkers, bringing real patient benefits.<br/>HER2-targeted treatments such as the monoclonal antibody, trastuzumab and the tyrosine kinase inhibitor (TKI) lapatinib, were developed for HER2-positive breast cancer patients; a group with a poor prognosis. However trastuzumab induces response in only 40% of patients and resistance inevitably develops to both drugs. HER2:HER3 dimerisation is vital to the translation of extracellular signals, via intracellular signaling cascades, to promote cancer cell proliferation, invasion and metastasis, and is studied herein. Regulation of the amplitude and kinetics of signal transduction from the HER family is reliant upon receptor endocytosis, and sorting to recycling or degradation. As these processes are likely to play a key role in treatment of HER2-positive breast cancer and the development of resistance, they are investigated in this project.<br/>Within the context of this work, optical proteomics quantifies post-translational modifications and protein-protein interactions by measuring Förster resonance energy transfer (FRET). Where fluorophores are located within nanometer proximity, FRET occurs, thus allowing quantification of protein-protein interactions. This novel technology is used alongside traditional biochemical methods, to demonstrate HER2/3 dimerisation, and the effect of perturbation of this system by lapatinib.<br/>Treatment with lapatinib abolishes HER2 phosphorylation but stabilises the HER2:HER3 dimer. Mutation at the HER2:HER3 intracellular interface prevents HER2:HER3 dimerisation and negates the lapatinib effect. Resistance may be mediated by endocytosis of the HER2:HER3 dimer, recycling and rephosphorylation of HER3.<br/>Fluorophore-conjugated antibodies have been optimised in cell lines, with the development of dual antibody assays to measure HER2:HER3 dimerisation in paraffin embedded tumour tissue. A prospective clinical trial is being set up in order to validate these assays alongside clinico-pathological and genetic biomarkers for prediction of response to HER2-targeted therapy.

Degree

thesis:*
Name dc:type.qualificationname
Doctor of Philosophy
Level dc:type.qualificationlevel
Doctoral Thesis
Grantor dc:publisher.institution
King's College London
Year dc:date.issued
2013

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Patel, Gargi
Advisors dc:contributor.advisor
  • Ng, Tsz Cheong
  • Ellis, Paul
  • Gillett, Cheryl Elaine

Rights

Language dc:language
eng

Identifiers

dc:identifier.*
Identifier
oai:kclpure.kcl.ac.uk:studenttheses/f735a04c-4be3-4092-ac2b-e92a6d7de057
OAI identifier oai:identifier
oai:kclpure.kcl.ac.uk:studenttheses/f735a04c-4be3-4092-ac2b-e92a6d7de057

Chain of custody

source
Harvested from
King's College London
Base URL
kclpure.kcl.ac.uk/ws/oai
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
related terms
citation

Patel, Gargi. An optical proteomic profile of the HER2 family in breast tumours and the effect of exposure to tyrosine kinase inhibitors. Doctoral Thesis thesis, King's College London, 2013. https://kclpure.kcl.ac.uk/portal/en/studentTheses/f735a04c-4be3-4092-ac2b-e92a6d7de057