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Updated: Dec 15, 2025

Optimization of a Multiplex RNA-based Expression Assay Using Breast Cancer Archival Material
Published on: August 1, 2018
ERBB2b mRNA isoform encodes a nuclear variant of the ERBB2 oncogene in breast cancer
Guoqiang Hua1,2,3, Aurélie Bergon1, Pierre Cauchy1,4
1INSERM UMR1090 TAGC, Aix-Marseille University, Marseille, France.
Abstract:
The presence of nuclear ERBB2 receptor-type tyrosine kinase is one of the causes of the resistance to membrane ERBB2-targeted therapy in breast cancers. It has been previously reported that this nuclear location arises through at least two different mechanisms: proteolytic shedding of the extracellular domain of the full-length receptor and translation of the messenger RNA (mRNA)-encoding ERBB2 from internal initiation codons. Here, we report a new mechanism and function where a significant portion of nuclear ERBB2 results from the translation of the variant ERBB2 mRNA under the transcriptional control of a distal promoter that is actively used in breast cancer cells. We show that both membrane ERBB2a and nuclear ERBB2b isoforms are prevalently expressed in breast cancer cell lines and carcinoma samples. The ERBB2b isoform, which is translated from mRNA variant 2, can directly translocate into the nucleus due to the lack of the signal peptide which is required for an intermediate membrane location. Small interfering RNA-mediated gene silencing showed that ERBB2b can repress ERBB2a expression, encoded by variant 1, whereas ERBB2a activates ERBB2b. Nuclear ERBB2 binding to its own promoter was revealed by chromatin immunoprecipitation assay. Altogether, our results provide new insights into the origin and function of nuclear ERBB2 where it can participate at the same time in a positive or a negative feedback autoregulatory loop, dependent on which of its promoters this bona fide transcription factor is acting. They also provide a new understanding for the resistance to therapies targeting the membrane-anchored ERBB2 in breast cancer.
Insights
A novel mechanism reveals nuclear ERBB2 in breast cancer arises from a variant mRNA, impacting therapy resistance. This nuclear ERBB2 isoform regulates its own expression through a feedback loop.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Nuclear ERBB2 receptor-type tyrosine kinase contributes to breast cancer resistance against membrane-targeted therapies.
- Previous studies identified proteolytic shedding and internal mRNA initiation as sources of nuclear ERBB2.
Purpose of the Study:
- To investigate a newly discovered mechanism for nuclear ERBB2 generation in breast cancer.
- To elucidate the function and regulatory role of nuclear ERBB2 isoforms.
Main Methods:
- Analysis of ERBB2 mRNA variants and protein isoforms in breast cancer cell lines and tissues.
- Utilized small interfering RNA (siRNA) for gene silencing experiments.
- Chromatin immunoprecipitation (ChIP) assay to assess nuclear ERBB2 binding to its promoter.
Main Results:
- Identified a new mechanism where nuclear ERBB2 originates from a variant ERBB2 mRNA transcript controlled by a distal promoter.
- Demonstrated prevalent expression of ERBB2a (membrane) and ERBB2b (nuclear) isoforms in breast cancer.
- Showed ERBB2b directly translocates to the nucleus and participates in a feedback loop, repressing ERBB2a, while ERBB2a activates ERBB2b.
Conclusions:
- Nuclear ERBB2 arises from a distinct mRNA variant, ERBB2b, which translocates to the nucleus and autoregulates ERBB2 expression.
- This autoregulatory loop, involving both positive and negative feedback, offers new insights into nuclear ERBB2 function.
- Understanding these mechanisms provides a novel perspective on therapeutic resistance in breast cancer.
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