RET signaling in breast cancer therapeutic resistance and metastasis

Author:

Pecar Geoffrey,Liu Simeng,Hooda Jagmohan,Atkinson Jennifer M.,Oesterreich Steffi,Lee Adrian V.

Abstract

AbstractRET, a single-pass receptor tyrosine kinase encoded on human chromosome 10, is well known to the field of developmental biology for its role in the ontogenesis of the central and enteric nervous systems and the kidney. In adults, RET alterations have been characterized as drivers of non-small cell lung cancer and multiple neuroendocrine neoplasms. In breast cancer, RET signaling networks have been shown to influence diverse functions including tumor development, metastasis, and therapeutic resistance. While RET is known to drive the development and progression of multiple solid tumors, therapeutic agents selectively targeting RET are relatively new, though multiple multi-kinase inhibitors have shown promise as RET inhibitors in the past; further, RET has been historically neglected as a potential therapeutic co-target in endocrine-refractory breast cancers despite mounting evidence for a key pathologic role and repeated description of a bi-directional relationship with the estrogen receptor, the principal driver of most breast tumors. Additionally, the recent discovery of RET enrichment in breast cancer brain metastases suggests a role for RET inhibition specific to advanced disease. This review assesses the status of research on RET in breast cancer and evaluates the therapeutic potential of RET-selective kinase inhibitors across major breast cancer subtypes.

Funder

Tsinghua University

The China Scholarship Council

National Institutes of Health

Breast Cancer Research Foundation

Susan G. Komen

METAvivor

Breast Cancer Alliance

Publisher

Springer Science and Business Media LLC

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. RETooling the RET Inhibitor Pralsetinib for ESR1 Fusion–Positive Breast Cancer and Beyond;Cancer Research;2023-10-02

2. Oestrogen receptor-independent actions of oestrogen in cancer;Molecular Biology Reports;2023-09-20

3. Characterizing excision repair cross-complementing family genes as drug resistance biomarkers in breast cancer;Beni-Suef University Journal of Basic and Applied Sciences;2023-08-30

4. RET proto-oncogene;Molecular Diagnostics of Cancer [Working Title];2023-08-29

5. Identifying Lymph Node Metastasis-Related Factors in Breast Cancer Using Differential Modular and Mutational Structural Analysis;Interdisciplinary Sciences: Computational Life Sciences;2023-04-28

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