Cargando…

LCDR regulates the integrity of lysosomal membrane by hnRNP K–stabilized LAPTM5 transcript and promotes cell survival

Lysosome plays important roles in cellular homeostasis, and its dysregulation contributes to tumor growth and survival. However, the understanding of regulation and the underlying mechanism of lysosome in cancer survival is incomplete. Here, we reveal a role for a histone acetylation–regulated long...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Xiwang, Wen, Ya, Liu, Shaomin, Duan, Liqiang, Liu, Tongfeng, Tong, Zhou, Wang, Zhuo, Gu, Yinmin, Xi, Yibo, Wang, Xiaodong, Luo, Dingsan, Zhang, Ruobing, Liu, Yajuan, Wang, Yang, Cheng, Tianyou, Jiang, Siyuan, Zhu, Xiaofeng, Yang, Xiaohui, Pan, Yongbo, Cheng, Shuwen, Ye, Qinong, Chen, Jinfei, Xu, Xiaoding, Gao, Shan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8812561/
https://www.ncbi.nlm.nih.gov/pubmed/35091468
http://dx.doi.org/10.1073/pnas.2110428119
_version_ 1784644678909427712
author Yang, Xiwang
Wen, Ya
Liu, Shaomin
Duan, Liqiang
Liu, Tongfeng
Tong, Zhou
Wang, Zhuo
Gu, Yinmin
Xi, Yibo
Wang, Xiaodong
Luo, Dingsan
Zhang, Ruobing
Liu, Yajuan
Wang, Yang
Cheng, Tianyou
Jiang, Siyuan
Zhu, Xiaofeng
Yang, Xiaohui
Pan, Yongbo
Cheng, Shuwen
Ye, Qinong
Chen, Jinfei
Xu, Xiaoding
Gao, Shan
author_facet Yang, Xiwang
Wen, Ya
Liu, Shaomin
Duan, Liqiang
Liu, Tongfeng
Tong, Zhou
Wang, Zhuo
Gu, Yinmin
Xi, Yibo
Wang, Xiaodong
Luo, Dingsan
Zhang, Ruobing
Liu, Yajuan
Wang, Yang
Cheng, Tianyou
Jiang, Siyuan
Zhu, Xiaofeng
Yang, Xiaohui
Pan, Yongbo
Cheng, Shuwen
Ye, Qinong
Chen, Jinfei
Xu, Xiaoding
Gao, Shan
author_sort Yang, Xiwang
collection PubMed
description Lysosome plays important roles in cellular homeostasis, and its dysregulation contributes to tumor growth and survival. However, the understanding of regulation and the underlying mechanism of lysosome in cancer survival is incomplete. Here, we reveal a role for a histone acetylation–regulated long noncoding RNA termed lysosome cell death regulator (LCDR) in lung cancer cell survival, in which its knockdown promotes apoptosis. Mechanistically, LCDR binds to heterogenous nuclear ribonucleoprotein K (hnRNP K) to regulate the stability of the lysosomal-associated protein transmembrane 5 (LAPTM5) transcript that maintains the integrity of the lysosomal membrane. Knockdown of LCDR, hnRNP K, or LAPTM5 promotes lysosomal membrane permeabilization and lysosomal cell death, thus consequently resulting in apoptosis. LAPTM5 overexpression or cathepsin B inhibitor partially restores the effects of this axis on lysosomal cell death in vitro and in vivo. Similarly, targeting LCDR significantly decreased tumor growth of patient-derived xenografts of lung adenocarcinoma (LUAD) and had significant cell death using nanoparticles (NPs)-mediated systematic short interfering RNA delivery. Moreover, LCDR/hnRNP K/LAPTM5 are up-regulated in LUAD tissues, and coexpression of this axis shows the increased diagnostic value for LUAD. Collectively, we identified a long noncoding RNA that regulates lysosome function at the posttranscriptional level. These findings shed light on LCDR/hnRNP K/LAPTM5 as potential therapeutic targets, and targeting lysosome is a promising strategy in cancer treatment.
format Online
Article
Text
id pubmed-8812561
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-88125612022-07-28 LCDR regulates the integrity of lysosomal membrane by hnRNP K–stabilized LAPTM5 transcript and promotes cell survival Yang, Xiwang Wen, Ya Liu, Shaomin Duan, Liqiang Liu, Tongfeng Tong, Zhou Wang, Zhuo Gu, Yinmin Xi, Yibo Wang, Xiaodong Luo, Dingsan Zhang, Ruobing Liu, Yajuan Wang, Yang Cheng, Tianyou Jiang, Siyuan Zhu, Xiaofeng Yang, Xiaohui Pan, Yongbo Cheng, Shuwen Ye, Qinong Chen, Jinfei Xu, Xiaoding Gao, Shan Proc Natl Acad Sci U S A Biological Sciences Lysosome plays important roles in cellular homeostasis, and its dysregulation contributes to tumor growth and survival. However, the understanding of regulation and the underlying mechanism of lysosome in cancer survival is incomplete. Here, we reveal a role for a histone acetylation–regulated long noncoding RNA termed lysosome cell death regulator (LCDR) in lung cancer cell survival, in which its knockdown promotes apoptosis. Mechanistically, LCDR binds to heterogenous nuclear ribonucleoprotein K (hnRNP K) to regulate the stability of the lysosomal-associated protein transmembrane 5 (LAPTM5) transcript that maintains the integrity of the lysosomal membrane. Knockdown of LCDR, hnRNP K, or LAPTM5 promotes lysosomal membrane permeabilization and lysosomal cell death, thus consequently resulting in apoptosis. LAPTM5 overexpression or cathepsin B inhibitor partially restores the effects of this axis on lysosomal cell death in vitro and in vivo. Similarly, targeting LCDR significantly decreased tumor growth of patient-derived xenografts of lung adenocarcinoma (LUAD) and had significant cell death using nanoparticles (NPs)-mediated systematic short interfering RNA delivery. Moreover, LCDR/hnRNP K/LAPTM5 are up-regulated in LUAD tissues, and coexpression of this axis shows the increased diagnostic value for LUAD. Collectively, we identified a long noncoding RNA that regulates lysosome function at the posttranscriptional level. These findings shed light on LCDR/hnRNP K/LAPTM5 as potential therapeutic targets, and targeting lysosome is a promising strategy in cancer treatment. National Academy of Sciences 2022-01-28 2022-02-01 /pmc/articles/PMC8812561/ /pubmed/35091468 http://dx.doi.org/10.1073/pnas.2110428119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Yang, Xiwang
Wen, Ya
Liu, Shaomin
Duan, Liqiang
Liu, Tongfeng
Tong, Zhou
Wang, Zhuo
Gu, Yinmin
Xi, Yibo
Wang, Xiaodong
Luo, Dingsan
Zhang, Ruobing
Liu, Yajuan
Wang, Yang
Cheng, Tianyou
Jiang, Siyuan
Zhu, Xiaofeng
Yang, Xiaohui
Pan, Yongbo
Cheng, Shuwen
Ye, Qinong
Chen, Jinfei
Xu, Xiaoding
Gao, Shan
LCDR regulates the integrity of lysosomal membrane by hnRNP K–stabilized LAPTM5 transcript and promotes cell survival
title LCDR regulates the integrity of lysosomal membrane by hnRNP K–stabilized LAPTM5 transcript and promotes cell survival
title_full LCDR regulates the integrity of lysosomal membrane by hnRNP K–stabilized LAPTM5 transcript and promotes cell survival
title_fullStr LCDR regulates the integrity of lysosomal membrane by hnRNP K–stabilized LAPTM5 transcript and promotes cell survival
title_full_unstemmed LCDR regulates the integrity of lysosomal membrane by hnRNP K–stabilized LAPTM5 transcript and promotes cell survival
title_short LCDR regulates the integrity of lysosomal membrane by hnRNP K–stabilized LAPTM5 transcript and promotes cell survival
title_sort lcdr regulates the integrity of lysosomal membrane by hnrnp k–stabilized laptm5 transcript and promotes cell survival
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8812561/
https://www.ncbi.nlm.nih.gov/pubmed/35091468
http://dx.doi.org/10.1073/pnas.2110428119
work_keys_str_mv AT yangxiwang lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT wenya lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT liushaomin lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT duanliqiang lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT liutongfeng lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT tongzhou lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT wangzhuo lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT guyinmin lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT xiyibo lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT wangxiaodong lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT luodingsan lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT zhangruobing lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT liuyajuan lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT wangyang lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT chengtianyou lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT jiangsiyuan lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT zhuxiaofeng lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT yangxiaohui lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT panyongbo lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT chengshuwen lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT yeqinong lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT chenjinfei lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT xuxiaoding lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival
AT gaoshan lcdrregulatestheintegrityoflysosomalmembranebyhnrnpkstabilizedlaptm5transcriptandpromotescellsurvival