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Identification of EGFR and RAS Inhibitors using Caenorhabditis elegans
Published on: October 5, 2020
ERBB2 and KRAS alterations mediate response to EGFR inhibitors in early stage gallbladder cancer
Prajish Iyer1,2, Shailesh V Shrikhande2,3, Malika Ranjan1
1Integrated Cancer Genomics Laboratory, Advanced Centre for Treatment Research Education in Cancer (ACTREC), Tata Memorial Centre, Navi Mumbai, Maharashtra, India.
Abstract:
The uncommonness of gallbladder cancer in the developed world has contributed to the generally poor understanding of the disease. Our integrated analysis of whole exome sequencing, copy number alterations, immunohistochemical, and phospho-proteome array profiling indicates ERBB2 alterations in 40% early-stage rare gallbladder tumors, among an ethnically distinct population not studied before, that occurs through overexpression in 24% (n = 25) and recurrent mutations in 14% tumors (n = 44); along with co-occurring KRAS mutation in 7% tumors (n = 44). We demonstrate that ERBB2 heterodimerizes with EGFR to constitutively activate the ErbB signaling pathway in gallbladder cells. Consistent with this, treatment with ERBB2-specific, EGFR-specific shRNA or with a covalent EGFR family inhibitor Afatinib inhibits tumor-associated characteristics of the gallbladder cancer cells. Furthermore, we observe an in vivo reduction in tumor size of gallbladder xenografts in response to Afatinib is paralleled by a reduction in the amounts of phospho-ERK, in tumors harboring KRAS (G13D) mutation but not in KRAS (G12V) mutation, supporting an essential role of the ErbB pathway. In overall, besides implicating ERBB2 as an important therapeutic target under neo-adjuvant or adjuvant settings, we present the first evidence that the presence of KRAS mutations may preclude gallbladder cancer patients to respond to anti-EGFR treatment, similar to a clinical algorithm commonly practiced to opt for anti-EGFR treatment in colorectal cancer.
Insights
ERBB2 alterations are common in early-stage gallbladder cancer, driving ErbB pathway activation. KRAS mutations may predict resistance to anti-EGFR therapies, impacting treatment strategies for this rare cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Gallbladder cancer (GBC) is poorly understood due to its rarity.
- Limited research exists on GBC in ethnically distinct populations.
Purpose of the Study:
- To investigate molecular alterations in early-stage GBC.
- To identify potential therapeutic targets and predict treatment response.
Main Methods:
- Integrated analysis of whole exome sequencing, copy number alterations, immunohistochemistry, and phospho-proteomics.
- In vitro studies using shRNA and Afatinib.
- In vivo xenograft models.
Main Results:
- ERBB2 alterations (overexpression/mutation) found in 40% of early-stage GBC.
- ERBB2 heterodimerizes with EGFR, activating the ErbB pathway.
- Afatinib inhibited GBC cell characteristics and reduced tumor size in vivo.
- KRAS mutations influenced response to Afatinib, with G13D showing some response, unlike G12V.
Conclusions:
- ERBB2 is a potential therapeutic target for GBC, particularly in neo-adjuvant/adjuvant settings.
- KRAS mutations may predict non-response to anti-EGFR therapy in GBC.
- Findings offer insights for personalized treatment strategies in GBC.
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