Lysosomes and lysosomal Ca(2+) play crucial roles in cellular homeostasis and drug resistance. The lysosomal Ca(2+) channel transient receptor potential mucolipin 3 (TRPML3; also known as mucolipinâ3 or MCOLN3) is a key regulator of autophagy and membrane trafficking; however, its role in tyrosine kinase inhibitor (TKI) resistance remains unclear. The contribution of TRPML3 to osimertinib resistance in nonâsmall cell lung cancer (NSCLC) was therefore assessed. Using publicly available RNA sequencing data, including profiles from clinical samples before and after osimertinib treatment, TRPML3 expression was measured in lung adenocarcinoma (LUAD) tissues. Additionally, twoâdimensional cell culture of, and threeâdimensional spheroids derived from, NSCLC cell lines were used to elucidate roles of TRPML3 in drug resistance. TRPML3 expression was significantly upregulated in both LUAD tissues from patients with residual disease after osimertinib treatment, as well as in osimertinibâresistant NSCLC cells. TRPML3 knockdown in resistant PC9 cells restored sensitivity to osimertinib and multiple TKIs; this was replicated in spheroid models. Mechanistically, osimertinib induced intracellular Ca(2+) oscillations in PC9 cells via lysosomal Ca(2+) release through TRPML3 rather than through TRPML1. In summary, the present findings suggest that elevated TRPML3 expression compensates for TRPML1 to maintain lysosomal acidity and biogenesis during TKI treatment, facilitating drug sequestration and resistance and identifying TRPML3 as a potential target for overcoming osimertinib resistance in NSCLC.
TRPML3âmediated lysosomal Ca(2+) release enhances drug sequestration and biogenesis, promoting osimertinib resistance in nonâsmall cell lung cancer.
TRPML3介导的溶酶体Ca(2+)释放增强药物隔离和生物合成,促进非小细胞肺癌对奥希替尼的耐药性
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作者:Kim Mi Seong, Kim Min Seuk
| 期刊: | Oncology Reports | 影响因子: | 3.900 |
| 时间: | 2025 | 起止号: | 2025 Sep |
| doi: | 10.3892/or.2025.8946 | 研究方向: | 细胞生物学 |
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