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KLF11 protects against abdominal aortic aneurysm through inhibition of endothelial cell dysfunction
Guizhen Zhao, Ziyi Chang, Yang Zhao, Yanhong Guo, Haocheng Lu, Wenying Liang, Oren Rom, Huilun Wang, Jinjian Sun, Tianqing Zhu, Yanbo Fan, Lin Chang, Bo Yang, Minerva T. Garcia-Barrio, Y. Eugene Chen, Jifeng Zhang
Guizhen Zhao, Ziyi Chang, Yang Zhao, Yanhong Guo, Haocheng Lu, Wenying Liang, Oren Rom, Huilun Wang, Jinjian Sun, Tianqing Zhu, Yanbo Fan, Lin Chang, Bo Yang, Minerva T. Garcia-Barrio, Y. Eugene Chen, Jifeng Zhang
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Research Article Vascular biology

KLF11 protects against abdominal aortic aneurysm through inhibition of endothelial cell dysfunction

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Abstract

Abdominal aortic aneurysm (AAA) is a life-threatening degenerative vascular disease. Endothelial cell (EC) dysfunction is implicated in AAA. Our group recently demonstrated that Krüppel-like factor 11 (KLF11) plays an essential role in maintaining vascular homeostasis, at least partially through inhibition of EC inflammatory activation. However, the functions of endothelial KLF11 in AAA remain unknown. Here we found that endothelial KLF11 expression was reduced in the ECs from human aneurysms and was time dependently decreased in the aneurysmal endothelium from both elastase- and Pcsk9/AngII-induced AAA mouse models. KLF11 deficiency in ECs markedly aggravated AAA formation, whereas EC-selective KLF11 overexpression markedly inhibited AAA formation. Mechanistically, KLF11 not only inhibited the EC inflammatory response but also diminished MMP9 expression and activity and reduced NADPH oxidase 2–mediated production of reactive oxygen species in ECs. In addition, KLF11-deficient ECs induced smooth muscle cell dedifferentiation and apoptosis. Overall, we established endothelial KLF11 as a potentially novel factor protecting against AAA and a potential target for intervention in aortic aneurysms.

Authors

Guizhen Zhao, Ziyi Chang, Yang Zhao, Yanhong Guo, Haocheng Lu, Wenying Liang, Oren Rom, Huilun Wang, Jinjian Sun, Tianqing Zhu, Yanbo Fan, Lin Chang, Bo Yang, Minerva T. Garcia-Barrio, Y. Eugene Chen, Jifeng Zhang

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Figure 6

Coculture with KLF11-deficient ECs impairs SMC homeostasis.

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Coculture with KLF11-deficient ECs impairs SMC homeostasis.
(A–E) Human ...
(A–E) Human aortic smooth muscle cells (HASMCs) were treated for 24 hours with the conditioned media from ECs (EC-CM) that had been transfected with siControl, siKLF11, or siKLF11+siNOX2 (20 μM), or infected with Ad-GFP or Ad-KLF11 (10 MOI) and subsequently stimulated for 1 hour with TNF-α (2 ng/mL) 48 hours after siRNA transfection or adenovirus infection and cultured in fresh opti-MEM for an additional 4 hours. (A–D) qPCR (A and C) and Western blot (B and D) to examine expression of SMC-specific contractile markers (smooth muscle α-actin [SMA], calponin, and smooth muscle 22–α [SM22α]), proinflammatory cytokines (MCP-1 and IL-6), and metalloproteinases (MMP2 and MMP9). (E) HASMCs were cultured in EC-CM for 48 hours, followed by immunostaining of TUNEL. Scale bar: 20 μm. (F–H) Schematics of the in vitro coculture system using a Transwell. HAECs (upper chamber) transfected with siControl, siKLF11 (20 μM), or siKLF11+siNOX2 or infected with Ad-GFP or Ad-KLF11 (10 MOI) were cultured for 48 hours followed by TNF-α (2 ng/mL) stimulation for 1 hour separately from HASMCs, changed to fresh opti-MEM, and then cocultured with HASMCs (bottom) in fresh opti-MEM for 24 hours. The expression of BAX in HASMCs was assayed by Western blot (G and H). Data are mean ± SEM from 3 independent experiments. Two-way ANOVA followed by Holm-Sidak post hoc analysis (A, C, E, G, and H).

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