YAP as a therapeutic target to reverse trastuzumab resistance

Ah-Rong Nam1, Kyoung-Seok Oh1, Ju-Hee Bang1

  • 1Cancer Research Institute, Seoul National University College of Medicine, Seoul, 03080, Korea.

Abstract

Insights

Targeting the ROR2-Yes-associated protein (YAP)/TEAD pathway overcomes trastuzumab resistance in HER2-positive cancers. This approach restores trastuzumab sensitivity and enhances anti-tumor immunity by modulating PD-L1 and promoting T-cell activation.

Area of Science:

  • Oncology
  • Molecular Biology
  • Immunology

Background:

  • Trastuzumab resistance is a major hurdle in treating HER2-positive cancers.
  • The role of the Yes-associated protein (YAP) pathway in trastuzumab resistance is not well understood.
  • Limited therapeutic options exist for overcoming trastuzumab resistance.

Purpose of the Study:

  • To investigate the role of the YAP pathway in trastuzumab resistance.
  • To evaluate YAP targeting as a strategy to overcome trastuzumab resistance in HER2-positive cancers.
  • To assess the impact of YAP inhibition on anti-tumor immunity.

Main Methods:

  • Established trastuzumab-resistant (HR) cell lines from HER2-positive gastric and biliary tract cancers.
  • Assessed YAP pathway activation using molecular and cellular assays.
  • Evaluated the antitumor effects of YAP targeting in vitro and in vivo xenograft models.
  • Studied immune modulation by YAP through co-culture experiments and flow cytometry.

Main Results:

  • Upregulation and activation of the YAP/TAZ pathway, including elevated ROR2 and nuclear YAP, were observed in HR cells.
  • YAP/TEAD-dependent Wnt5a expression created a positive-feedback loop amplifying YAP activity.
  • Targeting YAP restored trastuzumab sensitivity, increased CD4+ and CD8+ T cell activation, and reduced PD-L1 expression.
  • The YAP-TEAD inhibitor verteporfin reduced tumor growth and increased apoptosis in HR tumor models.

Conclusions:

  • Targeting the ROR2-YAP/TEAD axis is a promising strategy to overcome trastuzumab resistance.
  • This approach can enhance treatment efficacy and improve clinical outcomes in HER2-positive cancers.
  • YAP inhibition modulates the tumor immune microenvironment, suggesting potential for combination therapies.

Related Concept Videos

Targeted Cancer Therapies02:57

Targeted Cancer Therapies

The targeted cancer therapies, also known as “molecular targeted therapies,” take advantage of the molecular and genetic differences between the cancer cells and the normal cells. It needs a thorough understanding of the cancer cells to develop drugs that can target specific molecular aspects that drive the growth, progression, and spread of cancer cells without affecting the growth and survival of other normal cells in the body.
There are several types of targeted therapies against...
7.8K
Treatment Resistant Cancers02:56

Treatment Resistant Cancers

Cancer is the second leading cause of death in the United States. A cancer cell is genetically unstable and hence can mutate faster. They can also modify their microenvironment and escape immune surveillance. The difficulties in treating cancer are further compounded by the emergence of rapid resistance to anticancer drugs. The most common ways to attain resistance in cancer cells include alteration in drug transport and metabolism, modification of drug target, elevated DNA damage response, or...
3.4K
Combination Therapies and Personalized Medicine02:50

Combination Therapies and Personalized Medicine

Combining two or more treatment methods increases the life span of cancer patients while reducing damage to vital organs or tissue from the overuse of a single treatment. Combination therapy also targets different cancer-inducing pathways, thus reducing the chances of developing resistance to treatment.
The combination of the drug acetazolamide and sulforaphane is a good example of combination therapy to treat cancer. The cells in the interior of a large tumor often die due to the hypoxic and...
5.1K
Mitogens and the Cell Cycle02:38

Mitogens and the Cell Cycle

Mitogens and their receptors play a crucial role in controlling the progression of the cell cycle. However, the loss of mitogenic control over cell division leads to tumor formation. Therefore, mitogens and mitogen receptors play an important role in cancer research. For instance, the epidermal growth factor (EGF) - a type of mitogen and its transmembrane receptor (EGFR), decides the fate of the cell's proliferation. When EGF binds to EGFR, a member of the ErbB family of tyrosine kinase...
7.0K