| Literature DB >> 23198146 |
Ning Jiang1, Nabil F Saba, Zhuo Georgia Chen.
Abstract
HER3 (ErbB3) is a unique member of the human epidermal growth factor receptor (EGFR) family (ErbB family). It functions only through dimerization with other members of the ErbB family and modulates activity and sensitivity to targeted cancer therapies. This paper briefly describes the mechanism of HER3 in signal transduction and its potential role in acquired resistance to EGFR- and HER2-targeted therapies. We also consider recent developments in HER3-targeting therapeutics and their combination with inhibitors of other ErbB members in clinical applications.Entities:
Year: 2012 PMID: 23198146 PMCID: PMC3502787 DOI: 10.1155/2012/817304
Source DB: PubMed Journal: Chemother Res Pract ISSN: 2090-2107
Figure 1General features of the HER family. EGFR, HER3, HER4 have intact ligand binding sites. HER2 fails to bind any known ErbB ligands and HER3 has impaired catalytic activity. Two main strategies to target HER receptors for cancer treatment include monoclonal antibody (mAb) and tyrosine kinase inhibitor (TKI) approaches. The HER2-HER3 heterodimer is considered the most potent HER pair as an oncogenic unit and is illustrated as a representative dimer. Two key signaling pathways activated by the HER family dimers are the MAPK pathway and the PI3 K/Akt pathway. Activation of HER3 leads to transcription of genes that drive cell proliferation, migration, differentiation and angiogenesis [12, 15].
Figure 2Mechanisms by which HER3 contributes to resistance to EGFR-targeted therapy. (a) The oncogenic receptor tyrosine kinase MET could phosphorylate HER3, leading to activation of the PI3 K/Akt pathway independent of EGFR kinase activity [57]. (b) Lengthy exposure of cancer cells to TKIs can lead to Akt downregulation which consequently increases HER3 translocation from the cytoplasm to the membrane through a feedback regulation. The phosphorylation of HER3 recruits PI3 K and further activates the PI3 K/Akt pathway which plays an important role in resistance to EGFR-targeted therapy [2].
HER3-targeted drugs under development.
| Drug | Type | Target(s) | Development phase | Sponsor |
|---|---|---|---|---|
| MM-121 | Humanized mAb | HER3 | Phase I/II | Merrimack |
| U3-1287 (AMG 888) | Humanized mAb | HER3 | Phase I | U3 Pharma GmbH |
| MM-111 | Bispecific antibody | HER2-HER3 | Phase I | Merrimack |
| Pertuzumab | Humanized mAb | HER2-HER3 | Phase III | Genentech |
| MEHD7945A | mAb | HER1, HER3 | Phase II | Genentech |
| MP-470 (Amuvatinib) | Pan inhibitor | HER1/2/3 | Phase II | Astex Pharmaceuticals |
| AZD8931 | Pan inhibitor | HER1/2/3 | Phase I/II | AstraZeneca |