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Published on: February 16, 2015
Targeting HER3 by interfering with its Sec61-mediated cotranslational insertion into the endoplasmic reticulum
A Ruiz-Saenz1, M Sandhu1, Y Carrasco2
1Department of Medicine, Helen Diller Family Comprehensive Cancer Center, University of California, San Francisco, San Francisco, CA, USA.
Abstract:
There is increasing evidence implicating human epidermal growth factor receptor 3 (HER3) in several types of cancer. However, the development of targeted therapies to inactivate HER3 function has been a challenging endeavor. Its kinase domain functions in allostery not catalysis, and the classical ATP-analog class of tyrosine kinase inhibitors fail to inactivate it. Here we describe a novel approach that eliminates HER3 expression. The small-molecule cotransin CT8 binds the Sec61 translocon and prevents the signal peptide of the nascent HER3 protein from initiating its cotranslational translocation, resulting in the degradation of HER3 but not the other HER proteins. CT8 treatment suppresses the induction of HER3 that accompanies lapatinib treatment of HER2-amplified cancers and synergistically enhances the apoptotic effects of lapatinib. The target selectivities of cotransins are highly dependent on their structure and the signal sequence of targeted proteins and can be narrowed through structure-function studies. Targeting Sec61-dependent processing identifies a novel strategy to eliminate HER3 function.
Insights
A novel small molecule, cotransin CT8, targets HER3 (human epidermal growth factor receptor 3) by blocking its protein production. This approach degrades HER3, enhancing cancer therapy effectiveness.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Human epidermal growth factor receptor 3 (HER3) is implicated in various cancers.
- Targeting HER3 is challenging due to its allosteric kinase domain, rendering traditional inhibitors ineffective.
Purpose of the Study:
- To introduce a novel strategy for eliminating HER3 expression.
- To investigate the efficacy of cotransin CT8 in targeting HER3.
Main Methods:
- Utilized cotransin CT8, a small molecule that binds the Sec61 translocon.
- Prevented cotranslational translocation of nascent HER3 protein, leading to its degradation.
Main Results:
- CT8 selectively degrades HER3 without affecting other HER proteins.
- CT8 treatment suppressed HER3 induction during lapatinib therapy in HER2-amplified cancers.
- CT8 synergistically enhanced lapatinib's apoptotic effects.
Conclusions:
- Targeting Sec61-dependent protein processing offers a novel strategy to eliminate HER3 function.
- Cotransin CT8 represents a promising therapeutic approach for HER3-driven cancers.
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