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Focal adhesion proteins confer smooth muscle anoikis resistance and protection against aortic aneurysm and dissection
Zhenyuan Zhu, Mingjun Liu, Jianxin Wei, Deepa Suryanarayan, Parya Behzadi, Robert Edgar, Julie A. Phillippi, Cynthia St. Hilaire, Cristina Espinosa-Diez, Delphine Gomez
Zhenyuan Zhu, Mingjun Liu, Jianxin Wei, Deepa Suryanarayan, Parya Behzadi, Robert Edgar, Julie A. Phillippi, Cynthia St. Hilaire, Cristina Espinosa-Diez, Delphine Gomez
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Research Article Cell biology Vascular biology

Focal adhesion proteins confer smooth muscle anoikis resistance and protection against aortic aneurysm and dissection

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Abstract

Thoracic aortic aneurysm and dissection (TAAD) involves a progressive dilation of the aortic wall associated with degradation of the extracellular matrix (ECM), cystic medial degeneration, smooth muscle cell (SMC) dysfunction, and rarefaction. TAAD etiology and pathogenesis suggest that alteration of mechanical force propagation may contribute to SMC dysfunction. This study aims to determine the role of SMC focal adhesion proteins, which are key components of force transmission, in TAAD pathogenesis. scRNA-seq analysis of human TAA aortas showed reduced expression of intracellular focal adhesion components, including PTK2 (FAK), VCL, ILK, and TES transcripts, in SMCs. Additionally, protein levels of FAK, ILK, and VCL were decreased in the aorta of patients with TAA. SMC-specific Ptk2, Vcl, and Ilk KO mice treated with β-aminopropionitrile (BAPN) exhibited increased mortality, aortic dilation, ECM breakdown, and SMC loss. Mechanistically, knocking down FAK, ILK, and VCL exacerbated gliotoxin-induced SMC anoikis, whereas overexpressing full-length WT and dead-kinase FAK conferred resistance to apoptosis and cell detachment, indicating that FAK’s protective effects depend on its expression rather than its enzymatic activity. Inhibition of FAK kinase activity did not affect SMC apoptosis in vitro or aortic dilation in vivo. Our findings demonstrate that the expression of focal adhesion proteins protects against TAAD progression and SMC anoikis independently of FAK kinase activity.

Authors

Zhenyuan Zhu, Mingjun Liu, Jianxin Wei, Deepa Suryanarayan, Parya Behzadi, Robert Edgar, Julie A. Phillippi, Cynthia St. Hilaire, Cristina Espinosa-Diez, Delphine Gomez

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Figure 5

Loss of FAK expression increases SMC sensitivity to anoikis.

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Loss of FAK expression increases SMC sensitivity to anoikis.
(A) TUNEL s...
(A) TUNEL staining in Ptk2SMC+/+ and Ptk2SMC–/– aortas. DAPI: nuclear staining. Scale bar: 100 μm. (B) Quantification of medial TUNEL+ cells. Student’s t test. (C) qPCR analysis of Ptk2 transcript levels in SMC transduced with scrambled control shRNA (shScr) or gene Ptk2-targeting shRNA (shFAK). Data were normalized to GAPDH transcript expression. Student’s t test. *P < 0.05. (D) Western blot showing FAK protein expression in shFAK SMC compared with shScr SMC. The experiment was repeated 4 times, independently. (E) Representative micrographs of shFAK and shScr SMC treated with vehicle or gliotoxin for 6 hours. Scale bar: 200 μm. (F) Quantification of cell detachment in shFAK SMCs compared with shScr control. Data were presented as the percentage of attached cells after gliotoxin treatment relative to the vehicle-treated group. Student’s t test. (G) Annexin V expression by flow cytometry. Left: Representative flow cytometry histograms of Annexin V–Alexa Fluor 647 staining in shFAK and shScr SMCs treated with vehicle or Gliotoxin. Right: Quantification of Annexin V+ cells, shown as the percentage of total cells. One-way ANOVA. (H) Representative Western blot showing level of cleaved Caspase 3 and pro-Caspase 3. (I) Densitometric analysis of Pro-Caspase 3 and cleaved-Caspase 3 Western Blot. Results expressed as cleaved-Caspase 3/Pro-Caspase 3. One-way ANOVA. (J) Caspase 3/7 activity in shFAK and shScr SMCs treated with vehicle or gliotoxin. Fold change of luminescence relative to vehicle-treated shScr control. One-way ANOVA.

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