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Deficiency of the splicing factor RBM10 limits EGFR inhibitor response in EGFR-mutant lung cancer
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Deficiency of the splicing factor RBM10 limits EGFR inhibitor response in EGFR-mutant lung cancer

S. Nanjo, W. Wu, N. Karachaliou, C.M. Blakely, J. Suzuki, Y.-T. Chou, S.M. Ali, D.L. Kerr, V.R. Olivas, J. Shue, …
Journal of Clinical Investigation, 卷.132(13)
2022
Web of Science ID: WOS:000829089900003

摘要

Apoptosis Cell Line, Tumor ErbB Receptors Factor X Humans Lung Neoplasms Protein Kinase Inhibitors RNA Splicing Factors RNA, Messenger RNA-Binding Motifs RNA-Binding Proteins epidermal growth factor receptor epidermal growth factor receptor kinase inhibitor messenger RNA protein bcl x protein bcl xl RNA binding motif 10 RNA splicing factor unclassified drug blood clotting factor 10 EGFR protein, human epidermal growth factor receptor messenger RNA protein kinase inhibitor RBM10 protein, human RNA binding protein RNA splicing factor animal cell animal experiment animal model animal tissue apoptosis Article controlled study gene expression gene mutation HEK293 cell line human human cell lung cancer mitochondrion mouse nonhuman PC-9 cell line RNA-binding domain tumor xenograft genetics lung tumor metabolism pathology tumor cell line
Molecularly targeted cancer therapy has improved outcomes for patients with cancer with targetable oncoproteins, such as mutant EGFR in lung cancer. Yet, the long-term survival of these patients remains limited, because treatment responses are typically incomplete. One potential explanation for the lack of complete and durable responses is that oncogene-driven cancers with activating mutations of EGFR often harbor additional co-occurring genetic alterations. This hypothesis remains untested for most genetic alterations that co-occur with mutant EGFR. Here, we report the functional impact of inactivating genetic alterations of the mRNA splicing factor RNA-binding motif 10 (RBM10) that co-occur with mutant EGFR. RBM10 deficiency decreased EGFR inhibitor efficacy in patient-derived EGFR-mutant tumor models. RBM10 modulated mRNA alternative splicing of the mitochondrial apoptotic regulator Bcl-x to regulate tumor cell apoptosis during treatment. Genetic inactivation of RBM10 diminished EGFR inhibitor–mediated apoptosis by decreasing the ratio of (proapoptotic) Bcl-xS to (antiapoptotic) Bcl-xL isoforms of Bcl-x. RBM10 deficiency was a biomarker of poor response to EGFR inhibitor treatment in clinical samples. Coinhibition of Bcl-xL and mutant EGFR overcame the resistance induced by RBM10 deficiency. This study sheds light on the role of co-occurring genetic alterations and on the effect of splicing factor deficiency on the modulation of sensitivity to targeted kinase inhibitor cancer therapy. Copyright: © 2022, Nanjo et al. This is an open access article published under the terms of the Creative Commons Attribution 4.0 International License.

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https://www.scopus.com/inward/record.uri?eid=2-s2.0-85133690141&doi=10.1172%2fJCI145099&partnerID=40&md5=25f06aaf8e4b4836c0bf70d2a23bc57b檢視
url
https://doi.org/10.1172/JCI145099檢視
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合作類型
產業合作
機構合作
國際合作
引用書目主題
1 Clinical & Life Sciences
1.199 Lung Cancer
1.199.581 NSCLC Treatments
Web Of Science研究領域
Medicine, Research & Experimental
ESI研究領域
Clinical Medicine

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#3 Good Health and Well-Being

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