Adam17 Deficiency Promotes Atherosclerosis by Enhanced TNFR2 Signaling in Mice

Alexandros Nicolaou1, Zhen Zhao1, Bernd H Northoff1

  • 1From the Institute of Laboratory Medicine (A.N., B.H.N., K.S., A.H., A.K., D.T., L.M.H.) and Institute for Cardiovascular Prevention (Z.Z., C.Weber, S.S.), Ludwig-Maximilians-University Munich, Germany; Institute of Biochemistry, Christian Albrechts University, Kiel, Germany (A.C., S.R.-J.); Institute of Food, Nutrition and Health, ETH Zurich, Schwerzenbach, Switzerland (C.Wolfrum); and German Centre for Cardiovascular Research, partner site Munich Heart Alliance, Germany (C. Weber, S.S.).

Abstract

Insights

ADAM17 (a disintegrin and metalloproteinase 17) plays a protective role in atherosclerosis. Its deficiency leads to larger lesions and increased inflammatory cells by promoting TNFR2 signaling.

Area of Science:

  • Cardiovascular Biology
  • Molecular Medicine
  • Atherosclerosis Research

Background:

  • ADAM17 (a disintegrin and metalloproteinase 17) is a sheddase involved in releasing various membrane-bound proteins.
  • Substrates of ADAM17, such as adhesion molecules and cytokines, are implicated in the pathogenesis of atherosclerosis.

Purpose of the Study:

  • To investigate the role of ADAM17 in the development of atherosclerosis.
  • To test the hypothesis that ADAM17 is involved in the pathogenesis of atherosclerosis.

Main Methods:

  • Utilized Adam17 hypomorphic mice (Adam17ex/ex) crossed onto a low-density lipoprotein receptor (Ldlr)-deficient background to study atherosclerosis.
  • Analyzed atherosclerotic lesion size, cellular composition (macrophages, vascular smooth muscle cells), and protein levels of TNFα (tumor necrosis factor) and TNFR2 (tumor necrosis factor receptor 2).
  • Assessed cellular functions (proliferation, apoptosis, adhesion) of macrophages and vascular smooth muscle cells and employed siRNA (small interfering RNA) to investigate TNFR2's role.

Main Results:

  • Adam17ex/ex.Ldlr-/- mice exhibited approximately 1.5-fold larger atherosclerotic lesions compared to controls.
  • Deficiency in ADAM17 led to increased membrane-resident TNFα and TNFR2, causing constitutive TNFR2 signaling activation.
  • ADAM17 deficiency promoted proatherosclerotic cellular functions, including increased proliferation, reduced apoptosis in macrophages and vascular smooth muscle cells, and enhanced macrophage adhesion.

Conclusions:

  • ADAM17 plays an atheroprotective role in this mouse model.
  • This protective effect may be mediated by ADAM17's cleavage of membrane-bound TNFα and TNFR2.
  • Preventing the overactivation of TNFR2 signaling in vascular cells is a key mechanism of ADAM17's atheroprotective function.

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