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Truncation of the N-terminus of cardiac troponin I initiates adaptive remodeling of the myocardial proteosome via phosphorylation of mechano-sensitive signaling pathways
被引:0
|作者:
Chad M. Warren
Monika Halas
Paul H. Goldspink
Han-Zhong Feng
Anthony W. Herren
Beata M. Wolska
Pieter P. de Tombe
Jian-Ping Jin
R. John Solaro
机构:
[1] University of Illinois at Chicago,Department of Physiology & Biophysics, Center for Cardiovascular Research
[2] Wayne State University School of Medicine,Department of Physiology
[3] UC Davis Genome Center,Division of Cardiology, Department of Medicine
[4] University of Illinois at Chicago,Department of Physiology & Biophysics, College of Medicine, Center for Cardiovascular Research
[5] Phymedexp,undefined
[6] Université de Montpellier,undefined
[7] Inserm,undefined
[8] CNRS,undefined
[9] University of Illinois at Chicago,undefined
来源:
Molecular and Cellular Biochemistry
|
2022年
/
477卷
关键词:
Cytoskeleton;
Heart;
Integrin;
Mouse;
Sarcomeres;
Paxillin;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
The cardiac isoform of troponin I has a unique N-terminal extension (~ 1–30 amino acids), which contributes to the modulation of cardiac contraction and relaxation. Hearts of various species including humans produce a truncated variant of cardiac troponin I (cTnI-ND) deleting the first ~ 30 amino acids as an adaption in pathophysiological conditions. In this study, we investigated the impact of cTnI-ND chronic expression in transgenic mouse hearts compared to wildtype (WT) controls (biological n = 8 in each group). We aimed to determine the global phosphorylation effects of cTnI-ND on the cardiac proteome, thereby determining the signaling pathways that have an impact on cardiac function. The samples were digested and isobarically labeled and equally mixed for relative quantification via nanoLC-MS/MS. The peptides were then enriched for phospho-peptides and bioinformatic analysis was done with Ingenuity Pathway Analysis (IPA). We found approximately 77% replacement of the endogenous intact cTnI with cTnI-ND in the transgenic mouse hearts with 1674 phospho-proteins and 2971 non-modified proteins. There were 73 significantly altered phospho-proteins; bioinformatic analysis identified the top canonical pathways as associated with integrin, protein kinase A, RhoA, and actin cytoskeleton signaling. Among the 73 phospho-proteins compared to controls cTnI-ND hearts demonstrated a significant decrease in paxillin and YAP1, which are known to play a role in cell mechano-sensing pathways. Our data indicate that cTnI-ND modifications in the sarcomere are sufficient to initiate changes in the phospho-signaling profile that may underly the chronic-adaptive response associated with cTnI cleavage in response to stressors by modifying mechano-sensitive signaling pathways.
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页码:1803 / 1815
页数:12
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