Integration of flow-dependent endothelial phenotypes by Kruppel-like factor 2
Kush M. Parmar,H. Benjamin Larman,Guohao Dai,Yuzhi Zhang,Eric T. Wang,Sripriya N. Moorthy,Johannes R. Kratz,Zhiyong Lin,Mukesh K. Jain,Michael A. Gimbrone,Guillermo García-Cardeña +10 more
TL;DR: KLF2 therefore serves as a mechano-activated transcription factor important in the integration of multiple endothelial functions associated with regions of the arterial vasculature that are relatively resistant to atherogenesis.
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Abstract: In the face of systemic risk factors, certain regions of the arterial vasculature remain relatively resistant to the development of atherosclerotic lesions. The biomechanically distinct environments in these arterial geometries exert a protective influence via certain key functions of the endothelial lining; however, the mechanisms underlying the coordinated regulation of specific mechano-activated transcriptional programs leading to distinct endothelial functional phenotypes have remained elusive. Here, we show that the transcription factor Kruppel-like factor 2 (KLF2) is selectively induced in endothelial cells exposed to a biomechanical stimulus characteristic of atheroprotected regions of the human carotid and that this flow-mediated increase in expression occurs via a MEK5/ERK5/MEF2 signaling pathway. Overexpression and silencing of KLF2 in the context of flow, combined with findings from genome-wide analyses of gene expression, demonstrate that the induction of KLF2 results in the orchestrated regulation of endothelial transcriptional programs controlling inflammation, thrombosis/hemostasis, vascular tone, and blood vessel development. Our data also indicate that KLF2 expression globally modulates IL-1beta-mediated endothelial activation. KLF2 therefore serves as a mechano-activated transcription factor important in the integration of multiple endothelial functions associated with regions of the arterial vasculature that are relatively resistant to atherogenesis.
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Citations
Defining the regulation of KLF4 expression and its downstream transcriptional targets in vascular endothelial cells.
Guadalupe Villarreal,Yuzhi Zhang,H. Benjamin Larman,Jorge Gracia-Sancho,Andrew Koo,Guillermo García-Cardeña +5 more
TL;DR: It is shown that diverse vasoprotective stimuli including an atheroprotective shear stress waveform, simvastatin, and resveratrol induce the expression of KLF4 in cultured human endothelial cells and occurs via a MEK5/MEF2-dependent signaling pathway.
Flow cessation triggers endothelial dysfunction during organ cold storage conditions: strategies for pharmacologic intervention.
Jorge Gracia-Sancho,Guadalupe Villarreal,Yuzhi Zhang,Jessica Yu,Jessica Yu,Yao Liu,Stefan G. Tullius,Guillermo García-Cardeña +7 more
TL;DR: In this article, Simvastatin was used as a supplement in a cold preservation solution, and the expression of the transcription factor Kruppel-like factor 2 (KLF2) and its vasoprotective target genes were assessed during cold storage conditions in cultured human endothelial cells and murine aortic segments.
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