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PMID: 16204356 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Presenilin 2 regulates the systolic function of heart by modulating Ca2+ signaling.

Takeda T, Asahi M, Yamaguchi O, Hikoso S, Nakayama H, Kusakari Y, Kawai M, Hongo K, Higuchi Y, Kashiwase K, Watanabe T, Taniike M, Nakai A, Nishida K, Kurihara S, Donoviel DB, Bernstein A, Tomita T, Iwatsubo T, Hori M, Otsu K

Abstract

Genetic studies of families with familial Alzheimer's disease have implicated presenilin 2 (PS2) in the pathogenesis of this disease. PS2 is ubiquitously expressed in various tissues including hearts. In this study, we examined cardiac phenotypes of PS2 knockout (PS2KO) mice to elucidate a role of PS2 in hearts. PS2KO mice developed normally with no evidence of cardiac hypertrophy and fibrosis. Invasive hemodynamic analysis revealed that cardiac contractility in PS2KO mice increased compared with that in their littermate controls. A study of isolated papillary muscle showed that peak amplitudes of Ca2+ transients and peak tension were significantly higher in PS2KO mice than those in their littermate controls. PS2KO mouse hearts exhibited no change in expression of calcium regulatory proteins. Since it has been demonstrated that PS2 in brain interacts with sorcin, which serves as a modulator of cardiac ryanodine receptor (RyR2), we tested whether PS2 also interacts with RyR2. Immmunoprecipitation analysis showed that PS2, sorcin, and RyR2 interact with each other in HEK-293 cells overexpressing these proteins or in mouse hearts. Immunohistochemistry of heart muscle indicated that PS2 colocalizes with RyR2 and sorcin at the Z-lines. Elevated Ca2+ attenuated the association of RyR2 with PS2, whereas the association of sorcin with PS2 was enhanced. The enhanced Ca2+ transients and contractility in PS2KO mice were observed at low extracellular [Ca2+] but not at high levels of [Ca2+]. Taken together, our results suggest that PS2 plays an important role in cardiac excitation-contraction coupling by interacting with RyR2.

MeSH Terms
Animals Binding Sites Blotting, Western Brain/metabolism Calcium/chemistry,metabolism Calcium-Binding Proteins/chemistry Calcium-Transporting ATPases/metabolism Cell Line DNA, Complementary/metabolism Dose-Response Relationship, Drug Fibrosis/pathology Heart Ventricles/pathology Hemodynamics Humans Immunohistochemistry Immunoprecipitation Ionophores/pharmacology Kinetics Membrane Proteins/metabolism,physiology Mice Mice, Inbred C57BL Mice, Knockout Models, Biological Mutation Myocardial Contraction Myocardium/metabolism,pathology Neurons/metabolism Papillary Muscles/pathology Phenotype Presenilin-2 Ryanodine Receptor Calcium Release Channel/metabolism Sarcoplasmic Reticulum/metabolism Sarcoplasmic Reticulum Calcium-Transporting ATPases Signal Transduction Systole Time Factors Transfection
Chemicals
Calcium-Binding Proteins DNA, Complementary Ionophores Membrane Proteins PSEN2 protein, human Presenilin-2 Ryanodine Receptor Calcium Release Channel Sri protein, mouse Sarcoplasmic Reticulum Calcium-Transporting ATPases Calcium-Transporting ATPases Calcium
Authors & Affiliations
21 authors, click to expand affiliations / ORCID
Takeda Toshihiro
Department of Cardiovascular Medicine, Osaka University Graduate School of Medicine, Suita, Osaka, Japan.
Asahi Michio
Yamaguchi Osamu
Hikoso Shungo
Nakayama Hiroyuki
Kusakari Yoichiro
Kawai Makoto
Hongo Kenichi
Higuchi Yoshiharu
Kashiwase Kazunori
Watanabe Tetsuya
Taniike Masayuki
Nakai Atsuko
Nishida Kazuhiko
Kurihara Satoshi
Donoviel Dorit B
Bernstein Alan
Tomita Taisuke
Iwatsubo Takeshi
Hori Masatsugu
Otsu Kinya
Article Info
Journal
FASEB journal : official publication of the Federation of American Societies for Experimental Biology
Abbr.
FASEB J
ISSN
1530-6860
Published
2005-12-00
Epub
2005-00-04
Pages
2069-71
Language
English
Region
United States
NLM ID
8804484
Subset
IM
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