The IκB Kinase β/Nuclear Factor κB Signaling Pathway Protects the Heart From Hemodynamic Stress Mediated by the Regulation of Manganese Superoxide Dismutase Expression

Author:

Hikoso Shungo1,Yamaguchi Osamu1,Nakano Yuko1,Takeda Toshihiro1,Omiya Shigemiki1,Mizote Isamu1,Taneike Manabu1,Oka Takafumi1,Tamai Takahito1,Oyabu Jota1,Uno Yoshihiro1,Matsumura Yasushi1,Nishida Kazuhiko1,Suzuki Keiichiro1,Kogo Mikihiko1,Hori Masatsugu1,Otsu Kinya1

Affiliation:

1. From the Departments of Cardiovascular Medicine (S.H., O.Y., T. Takeda, S.O., I.M., M.T., T.O., T. Tamai, J.O., K.N., M.H., K.O.) and Medical Information Science (Y.M.), Graduate School of Medicine; First Department of Oral and Maxillofacial Surgery (Y.N., M.K.), Graduate School of Dentistry; Supply Center of Inbred Animals (Y.U.), Osaka University, Suita; and Department of Biochemistry (K.S.), Hyogo College of Medicine, Nishinomiya, Japan.

Abstract

Cardiomyocyte death plays an important role in the pathogenesis of heart failure. The nuclear factor (NF)-κB signaling pathway regulates cell death, however, the effect of NF-κB pathway on cell death can vary in different cells or stimuli. The purpose of the present study was to clarify the in vivo role of the NF-κB pathway in response to pressure overload. First, we subjected C57Bl6/J mice to pressure overload by means of transverse aortic constriction (TAC) and examined the activity of the NF-κB pathway in response to pressure overload. IκB kinase (IKK) and NF-κB were activated after TAC. Then, we investigated the role of the activation using cardiac-specific IKKβ-deficient mice (CKO). CKO displayed normal global cardiac structure and function compared with control littermates. We subjected CKO and control mice to pressure overload. One week after TAC, CKO showed cardiac dilation, dysfunction, and lung congestion, which are characteristics of heart failure. The number of apoptotic cells in the hearts of CKO mice increased significantly after TAC. The levels of manganese superoxide dismutase mRNA and protein expression in CKO after TAC were significantly attenuated compared with control mice. The levels of oxidative stress and c-Jun N-terminal kinase (JNK) activation in CKO after TAC were significantly greater than those in control mice. Isoproterenol-induced cell death of isolated adult CKO cardiomyocytes was inhibited by treatment with either a manganese superoxide dismutase mimetic or a JNK inhibitor. Thus, the IKKβ/NF-κB signaling pathway plays a protective role in cardiomyocytes because of the attenuation of oxidative stress and JNK activation in a setting of acute pressure overload.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine,Physiology

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