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KCNJ15 deficiency promotes drug resistance via affecting the function of lysosomes

The altered lysosomal function can induce drug redistribution which leads to drug resistance and poor prognosis for cancer patients. V-ATPase, an ATP-driven proton pump positioned at lysosomal surfaces, is responsible for maintaining the stability of lysosome. Herein, we reported that the potassium...

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Autores principales: Qiao, Xinbo, Zhang, Yixiao, Zhang, Zhan, Niu, Nan, Li, Haonan, Sun, Lisha, Ma, Qingtian, Bu, Jiawen, Liu, Jinchi, Chen, Guanglei, Xue, Jinqi, Yang, Yongliang, Liu, Caigang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shenyang Pharmaceutical University 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238847/
https://www.ncbi.nlm.nih.gov/pubmed/37274925
http://dx.doi.org/10.1016/j.ajps.2023.100814
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author Qiao, Xinbo
Zhang, Yixiao
Zhang, Zhan
Niu, Nan
Li, Haonan
Sun, Lisha
Ma, Qingtian
Bu, Jiawen
Liu, Jinchi
Chen, Guanglei
Xue, Jinqi
Yang, Yongliang
Liu, Caigang
author_facet Qiao, Xinbo
Zhang, Yixiao
Zhang, Zhan
Niu, Nan
Li, Haonan
Sun, Lisha
Ma, Qingtian
Bu, Jiawen
Liu, Jinchi
Chen, Guanglei
Xue, Jinqi
Yang, Yongliang
Liu, Caigang
author_sort Qiao, Xinbo
collection PubMed
description The altered lysosomal function can induce drug redistribution which leads to drug resistance and poor prognosis for cancer patients. V-ATPase, an ATP-driven proton pump positioned at lysosomal surfaces, is responsible for maintaining the stability of lysosome. Herein, we reported that the potassium voltage-gated channel subfamily J member 15 (KCNJ15) protein, which may bind to V-ATPase, can regulate the function of lysosome. The deficiency of KCNJ15 protein in breast cancer cells led to drug aggregation as well as reduction of drug efficacy. The application of the V-ATPase inhibitor could inhibit the binding between KCNJ15 and V-ATPase, contributing to the amelioration of drug resistance. Clinical data analysis revealed that KCNJ15 deficiency was associated with higher histological grading, advanced stages, more metastases of lymph nodes, and shorter disease free survival of patients with breast cancer. KCNJ15 expression level is positively correlated with a high response rate after receiving neoadjuvant chemotherapy. Moreover, we revealed that the small molecule drug CMA/BAF can reverse drug resistance by disrupting the interaction between KCNJ15 and lysosomes. In conclusion, KCNJ15 could be identified as an underlying indicator for drug resistance and survival of breast cancer, which might guide the choice of therapeutic strategies.
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spelling pubmed-102388472023-06-04 KCNJ15 deficiency promotes drug resistance via affecting the function of lysosomes Qiao, Xinbo Zhang, Yixiao Zhang, Zhan Niu, Nan Li, Haonan Sun, Lisha Ma, Qingtian Bu, Jiawen Liu, Jinchi Chen, Guanglei Xue, Jinqi Yang, Yongliang Liu, Caigang Asian J Pharm Sci Original Research Paper The altered lysosomal function can induce drug redistribution which leads to drug resistance and poor prognosis for cancer patients. V-ATPase, an ATP-driven proton pump positioned at lysosomal surfaces, is responsible for maintaining the stability of lysosome. Herein, we reported that the potassium voltage-gated channel subfamily J member 15 (KCNJ15) protein, which may bind to V-ATPase, can regulate the function of lysosome. The deficiency of KCNJ15 protein in breast cancer cells led to drug aggregation as well as reduction of drug efficacy. The application of the V-ATPase inhibitor could inhibit the binding between KCNJ15 and V-ATPase, contributing to the amelioration of drug resistance. Clinical data analysis revealed that KCNJ15 deficiency was associated with higher histological grading, advanced stages, more metastases of lymph nodes, and shorter disease free survival of patients with breast cancer. KCNJ15 expression level is positively correlated with a high response rate after receiving neoadjuvant chemotherapy. Moreover, we revealed that the small molecule drug CMA/BAF can reverse drug resistance by disrupting the interaction between KCNJ15 and lysosomes. In conclusion, KCNJ15 could be identified as an underlying indicator for drug resistance and survival of breast cancer, which might guide the choice of therapeutic strategies. Shenyang Pharmaceutical University 2023-05 2023-05-12 /pmc/articles/PMC10238847/ /pubmed/37274925 http://dx.doi.org/10.1016/j.ajps.2023.100814 Text en © 2023 Shenyang Pharmaceutical University. Published by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research Paper
Qiao, Xinbo
Zhang, Yixiao
Zhang, Zhan
Niu, Nan
Li, Haonan
Sun, Lisha
Ma, Qingtian
Bu, Jiawen
Liu, Jinchi
Chen, Guanglei
Xue, Jinqi
Yang, Yongliang
Liu, Caigang
KCNJ15 deficiency promotes drug resistance via affecting the function of lysosomes
title KCNJ15 deficiency promotes drug resistance via affecting the function of lysosomes
title_full KCNJ15 deficiency promotes drug resistance via affecting the function of lysosomes
title_fullStr KCNJ15 deficiency promotes drug resistance via affecting the function of lysosomes
title_full_unstemmed KCNJ15 deficiency promotes drug resistance via affecting the function of lysosomes
title_short KCNJ15 deficiency promotes drug resistance via affecting the function of lysosomes
title_sort kcnj15 deficiency promotes drug resistance via affecting the function of lysosomes
topic Original Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238847/
https://www.ncbi.nlm.nih.gov/pubmed/37274925
http://dx.doi.org/10.1016/j.ajps.2023.100814
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