Combined troponin I Ser-150 and Ser-23/24 phosphorylation sustains thin filament Ca2+ sensitivity and accelerates deactivation in an acidic environment

被引:35
作者
Nixon, Benjamin R. [1 ]
Walton, Shane D. [1 ]
Zhang, Bo [1 ]
Brundage, Elizabeth A. [1 ]
Little, Sean C. [1 ]
Ziolo, Mark T. [1 ]
Davis, Jonathan P. [1 ]
Biesiadecki, Brandon J. [1 ]
机构
[1] Ohio State Univ, Dept Physiol & Cell Biol, Davis Heart & Lung Res Inst, Columbus, OH 43210 USA
关键词
Cardiac troponin I; Thin filament deactivation; Acidosis; Phosphorylation; MYOFILAMENT CALCIUM SENSITIVITY; MYOCARDIAL-ISCHEMIA; CARDIAC-MUSCLE; SER23/24; PHOSPHORYLATION; ATPASE ACTIVITY; HEART; FORCE; EXCHANGE; MUTATION; ISCHEMIA/REPERFUSION;
D O I
10.1016/j.yjmcc.2014.03.010
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The binding of Ca2+ to troponin C (TnC) in the troponin complex is a critical step regulating the thin filament, the actin myosin interaction and cardiac contraction. Phosphorylation of the troponin complex is a key regulatory mechanism to match cardiac contraction to demand. Here we demonstrate that phosphorylation of the troponin I (TnI) subunit is simultaneously increased at Ser-150 and Ser-23/24 during in vivo myocardial ischemia. Myocardial ischemia decreases intracellular pH resulting in depressed binding of Ca2+ to TnC and impaired contraction. To determine the pathological relevance of these simultaneous Tnl phosphorylations we measured individual TnI Ser-150 (S150D), Ser-23/24 (S23/24D) and combined (S23/24/150D) pseudo-phosphoiylation effects on thin filament regulation at acidic pH similar to that in myocardial ischemia. Results demonstrate that while acidic pH decreased thin filament Ca2+ binding to TnC regardless of Tnl composition, Tnl S150D attenuated this decrease rendering it similar to non-phosphorylated TnI at normal pH. The dissociation of Ca2+ from TnC was unaltered by pH such that Tnl S150D remained slow, S23/24D remained accelerated and the combined S23/24/150D remained accelerated. This effect of the combined Tnl Ser-150 and Ser-23/24 pseudo-phosphorylations to maintain Ca2+ binding while accelerating Ca2+ dissociation represents the first post-translational modification of troponin by phosphorylation to both accelerate thin filament deactivation and maintain Ca(2+)sensitive activation. These data suggest that TnI Ser-150 phosphorylation induced attenuation of the pH-dependent decrease in Ca2+ sensitivity and its combination with Ser-23/24 phosphorylation to maintain accelerated thin filament deactivation may impart an adaptive role to preserve contraction during acidic ischemia pH without slowing relaxation. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:177 / 185
页数:9
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