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Epidermal growth factor receptor: Structure-function informing the design of anticancer therapeutics

期刊

EXPERIMENTAL CELL RESEARCH
卷 371, 期 1, 页码 1-19

出版社

ELSEVIER INC
DOI: 10.1016/j.yexcr.2018.08.009

关键词

EGFR-family; EGF-family; Membrane dynamics; Tyrosine kinase; Signaling; Targeting

资金

  1. National Health and Medical Research Council [1092788]
  2. Victorian Cancer Agency Mid-Career Research Fellowship [MCRF15017]
  3. Brain Foundation
  4. Royal Australasian College of Surgeons Research Scholarship

向作者/读者索取更多资源

Research on the epidermal growth factor (EGF) family and the family of receptors (EGFR) has progressed rapidly in recent times. New crystal structures of the ectodomains with different ligands, the activation of the kinase domain through oligomerisation and the use of fluorescence techniques have revealed profound conformational changes on ligand binding. The control of cell signaling from the EGFR-family is complex, with hetero-dimerisation, ligand affinity and signaling cross-talk influencing cellular outcomes. Analysis of tissue homeostasis indicates that the control of pro-ligand processing is likely to be as important as receptor activation events. Several members of the EGFR-family are overexpressed and/or mutated in cancer cells. The perturbation of EGFR-family signaling drives the malignant phenotype of many cancers and both inhibitors and antagonists of signaling from these receptors have already produced therapeutic benefits for patients. The design of affibodies, antibodies, small molecule inhibitors and even immunotherapeutic drugs targeting the EGFR-family has yielded promising new approaches to improving outcomes for cancer patients. In this review, we describe recent discoveries which have increased our understanding of the structure and dynamics of signaling from the EGFR-family, the roles of ligand processing and receptor cross-talk. We discuss the relevance of these studies to the development of strategies for designing more effective targeted treatments for cancer patients.

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