Nuclear Factor κB–Mediated Transactivation of Telomerase Prevents Intimal Smooth Muscle Cell From Replicative Senescence During Vascular Repair

Author:

Bu De-xiu1,Johansson Maria E.1,Ren Jingyi1,Xu Da-wei1,Johnson F. Brad1,Edfeldt Kristina1,Yan Zhong-qun1

Affiliation:

1. From the Cardiovascular Research Unit (D.-x.B., M.E.J., J.R., K.E., and Z.-q.Y.), Center for Molecular Medicine, Karolinska University Hospital, Stockholm, Sweden; the Hematology Research Unit (D.-w.X.), Center for Molecular Medicine, Karolinska University Hospital, Stockholm, Sweden; Department of Pathology and Laboratory Medicine (F.B.J.), University of Pennsylvania School of Medicine, Philadelphia; and Department of Cardiology, Peking University People Hospital (J.R.), Peking University Health...

Abstract

Objective— To gain insights into mechanisms by which intimal hyperplasia interferes with the repair process by investigating expression and function of the catalytic telomerase reverse transcriptase (TERT) subunit after vascular injury. Methods and Results— Functional telomerase is essential to the replicative longevity of vascular cells. We found that TERT was de novo activated in the intima of injured arteries, involving activation of the nuclear factor κB pathway. Stimulation of the isolated intimal smooth muscle cell (SMC) by basic fibroblast growth factor or tumor necrosis factor α resulted in increased TERT activity. This depends on the activation of c-Myc signaling because mutation of the E-box in the promoter or overexpression of mitotic arrest deficient 1 (MAD1), a c-Myc competitor, abrogated the transcriptional activity. Inhibition of nuclear factor κB in both intimal SMCs and the injured artery attenuated TERT transcriptional activity through reduction of c-Myc expression. Pharmacological blockade of TERT led to SMC senescence. Finally, depletion of telomerase function in mice resulted in severe intimal SMC senescence after vascular injury. Conclusion— These results support a model in which vascular injury induces de novo expression of TERT in intimal SMCs via activation of nuclear factor κB and upregulation of c-Myc. The resumed TERT activity is critical for intimal hyperplasia.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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