Combining RANK/RANKL and ERBB-2 targeting as a novel strategy in ERBB-2-positive breast carcinomas.
Antineoplastic Agents, Immunological
/ pharmacology
Breast Neoplasms
/ drug therapy
Cell Line, Tumor
Cells, Cultured
ErbB Receptors
/ antagonists & inhibitors
Female
Gene Expression
Humans
Immunohistochemistry
Molecular Targeted Therapy
RANK Ligand
/ genetics
Receptor Activator of Nuclear Factor-kappa B
/ antagonists & inhibitors
Signal Transduction
/ drug effects
Breast cancer
Denosumab
Dimers
ERBB family
ERBB-2
Pertuzumab
RANK
RANKL
Trastuzumab
Journal
Breast cancer research : BCR
ISSN: 1465-542X
Titre abrégé: Breast Cancer Res
Pays: England
ID NLM: 100927353
Informations de publication
Date de publication:
03 12 2019
03 12 2019
Historique:
received:
27
06
2019
accepted:
13
11
2019
entrez:
5
12
2019
pubmed:
5
12
2019
medline:
19
5
2020
Statut:
epublish
Résumé
ERBB-2 is overexpressed in about 20% of breast cancers (BCs), indicating poor prognosis. The receptor activator of nuclear factor-κB (RANK) pathway is implicated in ERBB-2 (+) BC. The purpose of this study was to elucidate the underlying molecular mechanism of this interaction and the beneficial impact of dual targeting of RANK and ERBB-2 pathways. We used SKBR3, MCF7, MDA-MB-453, and BT-474 human BC cell lines. We examined RANK and RANKL expression using RT-PCR, Western blot, and immunofluorescence. The evaluation of RANK expression in a cohort of BC patients was performed using immunohistochemistry. The interaction between RANK and ERBB family members was detected using proximity ligation assay (PLA), which enables the visualization of interacting proteins. We used inhibitors of both pathways [trastuzumab (T), pertuzumab (P), denosumab (D)]. NF-κB pathway activation was studied using Western blot. Cell growth and viability was evaluated using XTT, flow cytometry, and clonogenic assay. For cell migration evaluation, scratch assay was performed. Data were analyzed by one-way ANOVA. Cell lines express RANK and RANKL. RANK immunostaining was also detected in human BC tissue samples. RANK receptor dimerizes with ERBB family members. RANK/ERBB-2 dimer number seems to be associated with ERBB-2 expression (SKBR3, 5.4; BT-474, 8.2; MCF7, 0.7; MDA-MB-453, 0.3). RANK/ERBB-2 dimers were decreased in the presence of the inhibitors D, T, and P, while they were increased after RANKL (R) treatment in SKBR3 (m, 5.4; D, 1.2; T, 1.9; DT, 0.6; TP, 1; DTP, 0.4; R, 11.8) and BT-474 (m, 8.2; D, 3.1; T, 4.3; DT, 0.7; TP, 3.4; DTP, 3.2; R, 11.6). Combination targeting of SKBR3 further decreased NF-κB pathway activation compared to single targeting. In SKBR3, RANKL and ERBB-2 blockage resulted in reduced cell proliferation, increased apoptosis, and lower metastatic potential compared to mock cells (m) and reversed values in RANKL presence. The combination treatment of SKBR3 with D, T, and P had an advantage in functional traits compared to single targeting. Denosumab suppressed NF-κB signaling and diminished proliferation rate in MDA-MB-453 cells. MCF7 did not correspond to inhibitors. The results indicate a novel physical and molecular association between ERBB-2 and RANK pathways that affects ERBB-2 (+) BC growth. We also present data suggesting that the combination of anti-ERBB-2 agents and RANKL inhibitors have a potential direct anti-tumor effect and should be further tested in certain BC patients.
Sections du résumé
BACKGROUND
ERBB-2 is overexpressed in about 20% of breast cancers (BCs), indicating poor prognosis. The receptor activator of nuclear factor-κB (RANK) pathway is implicated in ERBB-2 (+) BC. The purpose of this study was to elucidate the underlying molecular mechanism of this interaction and the beneficial impact of dual targeting of RANK and ERBB-2 pathways.
METHODS
We used SKBR3, MCF7, MDA-MB-453, and BT-474 human BC cell lines. We examined RANK and RANKL expression using RT-PCR, Western blot, and immunofluorescence. The evaluation of RANK expression in a cohort of BC patients was performed using immunohistochemistry. The interaction between RANK and ERBB family members was detected using proximity ligation assay (PLA), which enables the visualization of interacting proteins. We used inhibitors of both pathways [trastuzumab (T), pertuzumab (P), denosumab (D)]. NF-κB pathway activation was studied using Western blot. Cell growth and viability was evaluated using XTT, flow cytometry, and clonogenic assay. For cell migration evaluation, scratch assay was performed. Data were analyzed by one-way ANOVA.
RESULTS
Cell lines express RANK and RANKL. RANK immunostaining was also detected in human BC tissue samples. RANK receptor dimerizes with ERBB family members. RANK/ERBB-2 dimer number seems to be associated with ERBB-2 expression (SKBR3, 5.4; BT-474, 8.2; MCF7, 0.7; MDA-MB-453, 0.3). RANK/ERBB-2 dimers were decreased in the presence of the inhibitors D, T, and P, while they were increased after RANKL (R) treatment in SKBR3 (m, 5.4; D, 1.2; T, 1.9; DT, 0.6; TP, 1; DTP, 0.4; R, 11.8) and BT-474 (m, 8.2; D, 3.1; T, 4.3; DT, 0.7; TP, 3.4; DTP, 3.2; R, 11.6). Combination targeting of SKBR3 further decreased NF-κB pathway activation compared to single targeting. In SKBR3, RANKL and ERBB-2 blockage resulted in reduced cell proliferation, increased apoptosis, and lower metastatic potential compared to mock cells (m) and reversed values in RANKL presence. The combination treatment of SKBR3 with D, T, and P had an advantage in functional traits compared to single targeting. Denosumab suppressed NF-κB signaling and diminished proliferation rate in MDA-MB-453 cells. MCF7 did not correspond to inhibitors.
CONCLUSIONS
The results indicate a novel physical and molecular association between ERBB-2 and RANK pathways that affects ERBB-2 (+) BC growth. We also present data suggesting that the combination of anti-ERBB-2 agents and RANKL inhibitors have a potential direct anti-tumor effect and should be further tested in certain BC patients.
Identifiants
pubmed: 31796128
doi: 10.1186/s13058-019-1226-9
pii: 10.1186/s13058-019-1226-9
pmc: PMC6892243
doi:
Substances chimiques
Antineoplastic Agents, Immunological
0
RANK Ligand
0
Receptor Activator of Nuclear Factor-kappa B
0
TNFSF11 protein, human
0
ErbB Receptors
EC 2.7.10.1
Types de publication
Journal Article
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Pagination
132Subventions
Organisme : State Scholarships Foundation
ID : MIS-5003404
Pays : International
Références
J Exp Clin Cancer Res. 2013 Sep 05;32:62
pubmed: 24011086
Mol Cancer Res. 2014 Mar;12(3):408-420
pubmed: 24319068
Pathology. 2017 Feb;49(2):111-119
pubmed: 28040199
CA Cancer J Clin. 2009 Jul-Aug;59(4):225-49
pubmed: 19474385
Nature. 2011 Feb 24;470(7335):548-53
pubmed: 21326202
Front Oncol. 2012 Jun 18;2:62
pubmed: 22720269
J Cell Physiol. 2008 Nov;217(2):409-22
pubmed: 18543257
N Engl J Med. 2007 Jul 5;357(1):39-51
pubmed: 17611206
Ann Oncol. 2007 Mar;18(3):581-92
pubmed: 17287242
Cancer Res. 2013 Mar 1;73(5):1635-46
pubmed: 23442322
Cell. 2001 Dec 14;107(6):763-75
pubmed: 11747812
Radiat Res. 2009 Jan;171(1):9-21
pubmed: 19138055
Breast Cancer Res Treat. 2017 Jul;164(1):57-67
pubmed: 28417335
Oncogene. 2010 Feb 25;29(8):1238-48
pubmed: 19946332
Nat Med. 2016 Aug;22(8):933-9
pubmed: 27322743
Breast Cancer Res Treat. 2014 Apr;144(2):273-85
pubmed: 24557338
Cancer Genet. 2017 Oct;216-217:61-66
pubmed: 29025596
Cancer Res. 2012 Jun 1;72(11):2879-88
pubmed: 22496457
Breast Cancer Res. 2013 Nov 12;15(6):R108
pubmed: 24216290
Oncoscience. 2014 Mar 06;1(2):180-2
pubmed: 25594009
Nature. 2012 Oct 4;490(7418):61-70
pubmed: 23000897
Trends Mol Med. 2016 Oct;22(10):839-850
pubmed: 27567286
Breast Cancer Res Treat. 2014 Jun;145(2):307-15
pubmed: 24737168
Breast Care (Basel). 2013 Mar;8(1):49-55
pubmed: 24715843
N Engl J Med. 2017 Jul 13;377(2):122-131
pubmed: 28581356
Nature. 2010 Nov 4;468(7320):98-102
pubmed: 20881962
Int J Biochem Cell Biol. 2007;39(5):851-6
pubmed: 17254832
Cancer Sci. 2015 Jan;106(1):25-33
pubmed: 25412610
Proc Natl Acad Sci U S A. 2007 Oct 2;104(40):15852-7
pubmed: 17890319
Nature. 2010 Nov 4;468(7320):103-7
pubmed: 20881963
Cancer Cell. 2013 May 13;23(5):647-59
pubmed: 23602409
Proc Natl Acad Sci U S A. 2004 Jul 6;101(27):10137-42
pubmed: 15220474
J Bone Miner Res. 2009 Feb;24(2):182-95
pubmed: 19016581
Nature. 2012 Apr 18;486(7403):346-52
pubmed: 22522925