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CaMKIIδC Drives Early Adaptive Ca2+ Change and Late Eccentric Cardiac Hypertrophy.
Ljubojevic-Holzer, Senka; Herren, Anthony W; Djalinac, Natasa; Voglhuber, Julia; Morotti, Stefano; Holzer, Michael; Wood, Brent M; Abdellatif, Mahmoud; Matzer, Ingrid; Sacherer, Michael; Radulovic, Snjezana; Wallner, Markus; Ivanov, Milan; Wagner, Stefan; Sossalla, Samuel; von Lewinski, Dirk; Pieske, Burkert; Brown, Joan Heller; Sedej, Simon; Bossuyt, Julie; Bers, Donald M.
Affiliation
  • Ljubojevic-Holzer S; Department of Cardiology (S.L.-H., N.D., J.V., M.A., I.M., M.S., S.R., M.W., D.v.L., S. Sedej), Medical University of Graz, Austria.
  • Herren AW; Department of Pharmacology, University of California, Davis, CA (S.L.-H., A.W.H., S.M., B.M.W., J.B., D.M.B.).
  • Djalinac N; BioTechMed Graz, Austria (S.L.-H., J.V., S. Sedej).
  • Voglhuber J; Department of Pharmacology, University of California, Davis, CA (S.L.-H., A.W.H., S.M., B.M.W., J.B., D.M.B.).
  • Morotti S; Department of Cardiology (S.L.-H., N.D., J.V., M.A., I.M., M.S., S.R., M.W., D.v.L., S. Sedej), Medical University of Graz, Austria.
  • Holzer M; Department of Cardiology (S.L.-H., N.D., J.V., M.A., I.M., M.S., S.R., M.W., D.v.L., S. Sedej), Medical University of Graz, Austria.
  • Wood BM; BioTechMed Graz, Austria (S.L.-H., J.V., S. Sedej).
  • Abdellatif M; Department of Pharmacology, University of California, Davis, CA (S.L.-H., A.W.H., S.M., B.M.W., J.B., D.M.B.).
  • Matzer I; Otto-Loewi Research Centre, Division of Pharmacology (M.H.), Medical University of Graz, Austria.
  • Sacherer M; Department of Pharmacology, University of California, Davis, CA (S.L.-H., A.W.H., S.M., B.M.W., J.B., D.M.B.).
  • Radulovic S; Department of Cardiology (S.L.-H., N.D., J.V., M.A., I.M., M.S., S.R., M.W., D.v.L., S. Sedej), Medical University of Graz, Austria.
  • Wallner M; Department of Cardiology (S.L.-H., N.D., J.V., M.A., I.M., M.S., S.R., M.W., D.v.L., S. Sedej), Medical University of Graz, Austria.
  • Ivanov M; Department of Cardiology (S.L.-H., N.D., J.V., M.A., I.M., M.S., S.R., M.W., D.v.L., S. Sedej), Medical University of Graz, Austria.
  • Wagner S; Department of Cardiology (S.L.-H., N.D., J.V., M.A., I.M., M.S., S.R., M.W., D.v.L., S. Sedej), Medical University of Graz, Austria.
  • Sossalla S; Department of Cardiology (S.L.-H., N.D., J.V., M.A., I.M., M.S., S.R., M.W., D.v.L., S. Sedej), Medical University of Graz, Austria.
  • von Lewinski D; Institute for Medical Research, University of Belgrade, Serbia (M.I.).
  • Pieske B; Klinik und Poliklinik für Innere Medizin II, Universitätsklinikum Regensburg, Germany (S.W., S. Sossalla).
  • Brown JH; Klinik für Kardiologie und Pneumologie, Georg-August-Universität Göttingen, Germany (S. Sossalla).
  • Sedej S; Klinik und Poliklinik für Innere Medizin II, Universitätsklinikum Regensburg, Germany (S.W., S. Sossalla).
  • Bossuyt J; Department of Cardiology (S.L.-H., N.D., J.V., M.A., I.M., M.S., S.R., M.W., D.v.L., S. Sedej), Medical University of Graz, Austria.
  • Bers DM; Department of Internal Medicine and Cardiology, Charité University Medicine Berlin, Germany (B.P.).
Circ Res ; 127(9): 1159-1178, 2020 10 09.
Article in En | MEDLINE | ID: mdl-32821022
ABSTRACT
RATIONALE CaMKII (Ca2+-Calmodulin dependent protein kinase) δC activation is implicated in pathological progression of heart failure (HF) and CaMKIIδC transgenic mice rapidly develop HF and arrhythmias. However, little is known about early spatio-temporal Ca2+ handling and CaMKII activation in hypertrophy and HF.

OBJECTIVE:

To measure time- and location-dependent activation of CaMKIIδC signaling in adult ventricular cardiomyocytes, during transaortic constriction (TAC) and in CaMKIIδC transgenic mice. METHODS AND

RESULTS:

We used human tissue from nonfailing and HF hearts, 4 mouse lines wild-type, KO (CaMKIIδ-knockout), CaMKIIδC transgenic in wild-type (TG), or KO background, and wild-type mice exposed to TAC. Confocal imaging and biochemistry revealed disproportional CaMKIIδC activation and accumulation in nuclear and perinuclear versus cytosolic regions at 5 days post-TAC. This CaMKIIδ activation caused a compensatory increase in sarcoplasmic reticulum Ca2+ content, Ca2+ transient amplitude, and [Ca2+] decline rates, with reduced phospholamban expression, all of which were most prominent near and in the nucleus. These early adaptive effects in TAC were entirely mimicked in young CaMKIIδ TG mice (6-8 weeks) where no overt cardiac dysfunction was present. The (peri)nuclear CaMKII accumulation also correlated with enhanced HDAC4 (histone deacetylase) nuclear export, creating a microdomain for transcriptional regulation. At longer times both TAC and TG mice progressed to overt HF (at 45 days and 11-13 weeks, respectively), during which time the compensatory Ca2+ transient effects reversed, but further increases in nuclear and time-averaged [Ca2+] and CaMKII activation occurred. CaMKIIδ TG mice lacking δB exhibited more severe HF, eccentric myocyte growth, and nuclear changes. Patient HF samples also showed greatly increased CaMKIIδ expression, especially for CaMKIIδC in nuclear fractions.

CONCLUSIONS:

We conclude that in early TAC perinuclear CaMKIIδC activation promotes adaptive increases in myocyte Ca2+ transients and nuclear transcriptional responses but that chronic progression of this nuclear Ca2+-CaMKIIδC axis contributes to eccentric hypertrophy and HF.
Subject(s)
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Calcium / Cardiomegaly / Myocytes, Cardiac / Calcium-Calmodulin-Dependent Protein Kinase Type 2 / Heart Failure Type of study: Etiology_studies Limits: Animals / Humans Language: En Journal: Circ Res Year: 2020 Type: Article Affiliation country: Austria

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Calcium / Cardiomegaly / Myocytes, Cardiac / Calcium-Calmodulin-Dependent Protein Kinase Type 2 / Heart Failure Type of study: Etiology_studies Limits: Animals / Humans Language: En Journal: Circ Res Year: 2020 Type: Article Affiliation country: Austria