Harnessing mitochondrial metabolism and drug resistance in non-small cell lung cancer and beyond by blocking heat-shock proteins

被引:31
作者
Parma, Beatrice [1 ]
Wurdak, Heiko [2 ,5 ]
Ceppi, Paolo [1 ,3 ,4 ]
机构
[1] Friedrich Alexander Univ Erlangen Nuremberg, Interdisciplinary Ctr Clin Res IZKF, Erlangen, Germany
[2] Univ Leeds, Sch Med, Stem Cell & Brain Tumour Grp, Leeds LS2 9JT, England
[3] Univ Southern Denmark, Dept Biochem & Mol Biol, Odense, Denmark
[4] Univ Southern Denmark, Dept Biochem & Mol Biol, Campusvej 55, DK-5230 Odense, Denmark
[5] Univ Leeds, Stem Cell & Brain Tumour Grp, Welcome Trust Brenner Bldg 5-12, Leeds, England
关键词
Cancer; Non-small cell lung cancer; Metabolism; Heat shock proteins; HSP60; Drug resistance; EPITHELIAL-MESENCHYMAL TRANSITION; HSP90; INHIBITOR; PHASE-I; TUMOR-SUPPRESSOR; PROSTATE-CANCER; OVARIAN-CANCER; GROWTH-FACTOR; OXIDATIVE-PHOSPHORYLATION; ANTITUMOR ACTIVITIES; SIGNALING PATHWAYS;
D O I
10.1016/j.drup.2022.100888
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Lung cancer is the leading cause of cancer-related deaths worldwide, with non-small cell lung cancer (NSCLC) being the predominant histological subtype. Despite the emergence of targeted and immune-based therapies that have considerably improved the clinical outcomes of selected patients, the overall NSCLC survival rate remains poor. NSCLC patients experience clinical relapse mainly because of chemoresistance. One promising therapeutic approach is targeting specific molecular vulnerabilities that are associated with the metabolic reprogramming of cancer cells. This strategy relies on evidence that cancer cells rewire their metabolism to sustain their uncon-trolled growth as well as invasive and metastatic properties, promoting adaptive resistance to chemo-radiotherapy. A critical component of this malignant transformation is the increased dependency on high levels of heat shock proteins (HSPs), which support the elevated protein folding demand and quality control of misfolded oncoproteins. Here, we provide an overview of the literature on metabolism reprogramming, dereg-ulation of mitochondrion and on the role of HSPs in promoting malignancy in lung and other cancer types. A particular focus is dedicated to the role of mitochondrial HSP60 (HSPD1) in NSCLC metabolism and drug resistance for the potential development of new resistance-defying anti-HSP drugs.
引用
收藏
页数:14
相关论文
共 263 条
[1]   Relationship between heat shock protein 60 (HSP60) mRNA expression and resistance to platinum analogues in human ovarian and bladder carcinoma cell lines [J].
Abuhadid, M ;
Wilkes, JD ;
Elakawi, Z ;
Pendyala, L ;
Perez, RP .
CANCER LETTERS, 1997, 119 (01) :63-70
[2]   The HSP70 Modulator MAL3-101 Inhibits Merkel Cell Carcinoma [J].
Adam, Christian ;
Baeurle, Anne ;
Brodsky, Jeffrey L. ;
Wipf, Peter ;
Schrama, David ;
Becker, Jurgen Christian ;
Houben, Roland .
PLOS ONE, 2014, 9 (04)
[3]   Mutant p53 Depletion by Novel Inhibitors for HSP40/J-Domain Proteins Derived from the Natural Compound Plumbagin [J].
Alalem, Mohamed ;
Bhosale, Mrinalini ;
Ranjan, Atul ;
Yamamoto, Satomi ;
Kaida, Atsushi ;
Nishikawa, Shigeto ;
Parrales, Alejandro ;
Farooki, Sana ;
Anant, Shrikant ;
Padhye, Subhash ;
Iwakuma, Tomoo .
CANCERS, 2022, 14 (17)
[4]   Pre-clinical efficacy of PU-H71, a novel HSP90 inhibitor, alone and in combination with bortezomib in Ewing sarcoma [J].
Ambati, Srikanth R. ;
Lopes, Eloisi Caldas ;
Kosugi, Kohji ;
Mony, Ullas ;
Zehir, Ahmet ;
Shah, Smit K. ;
Taldone, Tony ;
Moreira, Andre L. ;
Meyers, Paul A. ;
Chiosis, Gabriela ;
Moore, Malcolm A. S. .
MOLECULAR ONCOLOGY, 2014, 8 (02) :323-336
[5]   Prodigiosin/PU-H71 as a novel potential combined therapy for triple negative breast cancer (TNBC): preclinical insights [J].
Anwar, Mohammed Moustapha ;
Shalaby, Manal ;
Embaby, Amira M. ;
Saeed, Hesham ;
Agwa, Mona M. ;
Hussein, Ahmed .
SCIENTIFIC REPORTS, 2020, 10 (01)
[6]   Systemic Therapy for Locally Advanced and Metastatic Non-Small Cell Lung Cancer A Review [J].
Arbour, Kathryn C. ;
Riely, Gregory J. .
JAMA-JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 2019, 322 (08) :764-774
[7]   Inhibition of Heat-shock Protein 27 Reduces 5-Fluorouracil-acquired Resistance in Human Colon Cancer Cells [J].
Asada, Yusuke ;
Tsuruta, Masashi ;
Okabayashi, Koji ;
Shigeta, Kohei ;
Ishida, Takashi ;
Shimada, Takehiro ;
Suzumura, Hirofumi ;
Koishikawa, Kaoru ;
Akimoto, Shingo ;
Hasegawa, Hirotoshi ;
Kitagawa, Yuko .
ANTICANCER RESEARCH, 2021, 41 (03) :1283-1290
[8]   Lung cancer cells and their sensitivity/resistance to cisplatin chemotherapy: Role of microRNAs and upstream mediators [J].
Ashrafizadeh, Milad ;
Zarrabi, Ali ;
Hushmandi, Kiavash ;
Hashemi, Farid ;
Moghadam, Ebrahim Rahmani ;
Owrang, Marzieh ;
Hashemi, Fardin ;
Makvandi, Pooyan ;
Goharrizi, Mohammad Ali Sheikh Beig ;
Najafi, Masoud ;
Khan, Haroon .
CELLULAR SIGNALLING, 2021, 78
[9]   Tid-1 interacts with the von Hippel-Lindau protein and modulates angiogenesis by destabilization of HIF-1α [J].
Bae, MK ;
Jeong, JW ;
Kim, SH ;
Kim, SY ;
Kang, HJ ;
Kim, DM ;
Bae, SK ;
Yun, I ;
Trentin, GA ;
Rozakis-Adcock, M ;
Kim, KW .
CANCER RESEARCH, 2005, 65 (07) :2520-2525
[10]   Immune Checkpoint Inhibitors for the Treatment of Cancer: Clinical Impact and Mechanisms of Response and Resistance [J].
Bagchi, Sreya ;
Yuan, Robert ;
Engleman, Edgar G. .
ANNUAL REVIEW OF PATHOLOGY: MECHANISMS OF DISEASE, VOL 16, 2021, 2021, 16 :223-249