Caveolin1 and YAP drive mechanically induced mesothelial to mesenchymal transition and fibrosis

被引:53
作者
Strippoli, Raffaele [1 ,2 ,3 ]
Sandoval, Pilar [4 ]
Moreno-Vicente, Roberto [3 ]
Rossi, Lucia [1 ]
Battistelli, Cecilia [1 ]
Terri, Michela [1 ,2 ]
Pascual-Anton, Lucia [4 ]
Loureiro, Marta [5 ,6 ]
Matteini, Francesca [1 ]
Calvo, Enrique [5 ,6 ]
Jimenez-Heffernan, Jose Antonio [7 ]
Gomez, Manuel Jose [8 ]
Jimenez-Jimenez, Victor [3 ]
Sanchez-Cabo, Fatima [8 ]
Vazquez, Jesus [5 ,6 ]
Tripodi, Marco [1 ,2 ]
Lopez-Cabrera, Manuel [4 ]
del Pozo, Miguel Angel [3 ]
机构
[1] Sapienza Univ Rome, Dept Mol Med, Viale Regina Elena 324, I-00161 Rome, Italy
[2] IRCCS, Natl Inst Infect Dis L Spallanzani, Via Portuense 292, I-00149 Rome, Italy
[3] Ctr Nacl Invest Cardiovasc CNIC, Mechanoadaptat & Caveolae Biol Lab, Cell & Dev Biol Area, Madrid 28029, Spain
[4] Ctr Biol Mol Severo Ochoa CSIC, Programa Homeostasis Tejidos & Organos, Madrid 28049, Spain
[5] Inst Salud Carlos III, Cardiovasc Prote Lab, Ctr Nacl Invest Cardiovasc Carlos III CNIC, Madrid 28029, Spain
[6] Inst Salud Carlos III, CIBER Cardiovasc Dis CIBERCV, Madrid 28029, Spain
[7] Hosp Univ La Princesa, Dept Anat Patol, Inst Invest Sanitaria Princesa IP, Madrid 28006, Spain
[8] Ctr Nacl Invest Cardiovasc Carlos III CNIC, Bioinformat Unit, Madrid 28029, Spain
关键词
PEPTIDE IDENTIFICATION; PERITONEAL-DIALYSIS; ACTIVATION; CELLS; PROLIFERATION; ENDOTHELIN-1; RESPONSES; PROMOTES; YAP/TAZ; BIOLOGY;
D O I
10.1038/s41419-020-02822-1
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Despite their emerging relevance to fully understand disease pathogenesis, we have as yet a poor understanding as to how biomechanical signals are integrated with specific biochemical pathways to determine cell behaviour. Mesothelial-to-mesenchymal transition (MMT) markers colocalized with TGF-beta 1-dependent signaling and yes-associated protein (YAP) activation across biopsies from different pathologies exhibiting peritoneal fibrosis, supporting mechanotransduction as a central driving component of these class of fibrotic lesions and its crosstalk with specific signaling pathways. Transcriptome and proteome profiling of the response of mesothelial cells (MCs) to linear cyclic stretch revealed molecular changes compatible with bona fide MMT, which (i) overlapped with established YAP target gene subsets, and were largely dependent on endogenous TGF-beta 1 signaling. Importantly, TGF-beta 1 blockade blunts the transcriptional upregulation of these gene signatures, but not the mechanical activation and nuclear translocation of YAP per se. We studied the role therein of caveolin-1 (CAV1), a plasma membrane mechanotransducer. Exposure of CAV1-deficient MCs to cyclic stretch led to a robust upregulation of MMT-related gene programs, which was blunted upon TGF-beta 1 inhibition. Conversely, CAV1 depletion enhanced both TGF-beta 1 and TGFBRI expression, whereas its re-expression blunted mechanical stretching-induced MMT. CAV1 genetic deficiency exacerbated MMT and adhesion formation in an experimental murine model of peritoneal ischaemic buttons. Taken together, these results support that CAV1-YAP/TAZ fine-tune the fibrotic response through the modulation of MMT, onto which TGF-beta 1-dependent signaling coordinately converges. Our findings reveal a cooperation between biomechanical and biochemical signals in the triggering of MMT, representing a novel potential opportunity to intervene mechanically induced disorders coursing with peritoneal fibrosis, such as post-surgical adhesions.
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页数:19
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