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Inhibition of the methyltranferase EZH2 improves aortic performance in experimental thoracic aortic aneurysm
Christian L. Lino Cardenas, Chase W. Kessinger, Carolyn MacDonald, Arminder S. Jassar, Eric M. Isselbacher, Farouc A. Jaffer, Mark E. Lindsay
Christian L. Lino Cardenas, Chase W. Kessinger, Carolyn MacDonald, Arminder S. Jassar, Eric M. Isselbacher, Farouc A. Jaffer, Mark E. Lindsay
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Research Article Cardiology Cell biology

Inhibition of the methyltranferase EZH2 improves aortic performance in experimental thoracic aortic aneurysm

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Abstract

Loss-of-function mutations in genes encoding contractile proteins have been observed in thoracic aortic aneurysms (TAA). To gain insight into the contribution of contractile protein deficiency in the pathogenesis of TAA, we examined human aneurysm samples. We found multiple contractile gene products deficient in TAA samples, and in particular, expression of SM22α was inversely correlated with aneurysm size. SM22α-deficient mice demonstrated pregnancy-induced aortic dissection, and SM22α deficiency worsened aortic aneurysm in Fbn1C1039G/+ (Marfan) mice, validating this gene product as a TAA effector. We found that repression of SM22α was enforced by increased activity of the methyltransferase EZH2. TGF-β effectors such as SMAD3 were excluded from binding SM22α-encoding chromatin (TAGLN) in TAA samples, while treatment with the EZH2 inhibitor GSK343 improved cytoskeletal architecture and restored SM22α expression. Finally, inhibition of EZH2 improved aortic performance in Fbn1C1039G/+ mice, in association with restoration of contractile protein expression (including SM22α). Together, these data inform our understanding of contractile protein deficiency in TAA and support the pursuit of chromatin modifying factors as therapeutic targets in aortic disease.

Authors

Christian L. Lino Cardenas, Chase W. Kessinger, Carolyn MacDonald, Arminder S. Jassar, Eric M. Isselbacher, Farouc A. Jaffer, Mark E. Lindsay

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Figure 4

In vivo inhibition of EZH2 activity palliates experimental aortic aneurysm.

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In vivo inhibition of EZH2 activity palliates experimental aortic aneury...
(A) Echocardiographic aortic root and ascending aortic quantification (at 6 months of age) of mice treated from 2 months to 6 months of age. WT (PBS, n = 8; losartan, n = 6; GSK343, n = 6) and Fbn1C1039G/+ (PBS, n = 8; losartan, n = 6; GSK343, n = 6) mice were treated (1-way ANOVA, post hoc Tukey’s test) (B) Expression pattern of VSMC phenotypic markers in aortas from WT or Fbn1C1039G/+ mice treated with losartan or GSK343 from 2–6 months of age (PBS, n = 8; losartan, n = 6; GSK343, n = 6) and Fbn1C1039G/+ (PBS, n = 8; losartan, n = 6; GSK343, n = 6). RNA levels were normalized to WT mice treated with PBS. (C) Top: CT scan and histologic analysis of WT or Fbn1C1039G/+ mouse aortas treated with either PBS, losartan, or GSK343. Low-magnification aorta VVG scale bar: 250 μm; high-magnification VVG, H&E, Masson’s trichrome, and immunofluorescence scale bars: 50 μm. Bottom: Quantification of histologic parameters (1-way ANOVA, post hoc Tukey’s test). FC, fold change; VVG, Verhoeff-Van Gieson stain.

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