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Influence of Troponin I Phosphrylation by PKC on Contractile Function

Influence of Troponin I Phosphrylation by PKC on Contractile Function
PKC 磷酸化肌钙蛋白 I 对收缩功能的影响
批准号:
7802229
负责人:
Margaret V Westfall
金额:
$30.23万
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-12-03 至 2012-01-30

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英文摘要
DESCRIPTION (provided by applicant): Protein kinase C (PKC) plays an important role in modulating cardiac contractile function. Experiments in the previous funding cycle showed activation of PKC phosphorylates the thin filament protein, cardiac troponin I (cTnl) in intact myocytes, and this phosphorylation event accelerated relaxation. PKC phosphorylates 3 clusters of residues on purified cTnl (e.g. Ser23/24, Ser43/45, Thr144). Our long term goal is to determine the contribution of these cTnl phosphorylation sites to the PKC-mediated relaxation response in intact myocytes. In our earlier work, Thr144 accelerated relaxation in response to acute PKC activation. More prolonged PKC activation phosphorylated Ser23/24, which also accelerated relaxation. However, the role of Ser43/45 phosphorylation in myocyte relaxation is controversial, and its contribution to relaxation relative to the other Tnl phosphorylation sites remains unclear. The hypothesis tested in the first aim of this proposal is that there is a dose-dependent divergent influence of Ser43/45 phosphorylation on myocyte relaxation. Low level Ser43/45 phosphorylation is expected to accelerate relaxation, while more extensive phosphorylation is predicted to slow relaxation. Aim 2 is designed to examine the relative contribution and/or functional hierarchy of the 3 phosphorylation clusters on relaxation. Viral-based gene transfer will be used in both aims to achieve a range of cTnl replacement with modified cTnl containing substitutions in specific phosphorylation site(s). These substitutions include non-phosphorylatable Ala and negatively charged Asp to mimic phosphorylation. Rapid, specific and efficient myofilament replacement with modified Tnl is achieved in fully differentiated adult rat myocytes using this powerful approach. These studies will provide new insights into the individual and integrated role of the cTnl phosphorylation clusters in the relaxation response to activated PKC. The final aim focuses on the state of PKC-dependent cTnl phosphorylation and its influence on function during the development of heart failure. The key hypothesis tested is that PKCmediated cTnl phosphorylation is decreased and contributes to delayed relaxation during heart failure. This hypothesis will be tested in a pressure-overload rat model, and in explanted human myocardium from failing hearts. The ability to restore relaxation by gene transfer of Asp-substituted cTnl will be examined in failing myocytes. These studies could aid in the development of therapies to improve relaxation during heart failure.
期刊论文(5)
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会议论文
Structure-activity studies of RFamide-related peptide-1 identify a functional receptor antagonist and novel cardiac myocyte signaling pathway involved in contractile performance.
RFamide 相关肽-1 的结构活性研究确定了一种功能性受体拮抗剂和参与收缩性能的新型心肌细胞信号传导通路。
DOI: 10.1021/jm300760m
发表时间: 2012
期刊: Journal of medicinal chemistry
影响因子: 7.3
作者: [Nichols,Ruthann, Bass,Chloe, Demers,Leslie, Larsen,Brian, Li,Elton, Blewett,Nathan, Converso-Baran,Kimber, Russell,MarkW, Westfall,MargaretV]
通讯作者: Westfall,MargaretV
A switch that lowers the betaAR: insights from a troponin I mutation linked to hypertrophic cardiomyopathy.
降低 betaAR 的开关:来自与肥厚型心肌病相关的肌钙蛋白 I 突变的见解。
DOI: 10.1016/j.yjmcc.2005.06.014
发表时间: 2006
期刊: Journal of molecular and cellular cardiology
影响因子: 5
作者: [Westfall,MargaretV]
通讯作者: Westfall,MargaretV
Post-translational modification of the thin filament leads to progressive pump dysfunction
Post-translational modification of the thin filament leads to progressive pump dysfunction
Influence of Troponin I Phosphrylation by PKC on Contractile Function
Protein Expression in Failing Human Hearts
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