Histone Deacetylase Inhibition: A Novel Approach to Cardioprotection
Histone Deacetylase Inhibition: A Novel Approach to Cardioprotection
批准号:
9704022
负责人:
TING C ZHao
金额:
$40.96万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-08-14 至 2023-06-30
关键词:
AblationAcetylationAngiogenesis InhibitionAnimal ModelAttenuatedBiologicalCardiacCardiac MyocytesCardiovascular DiseasesCause of DeathCell SurvivalCoronaryDevelopmentExposure toFamily suidaeFunctional disorderFundingFutureGeneticGoalsGrantHDAC4 geneHealthHeartHeart DiseasesHeart InjuriesHistone DeacetylaseHistone Deacetylase InhibitorHumanHypoxiaImpairmentIn VitroInjuryInvestigationKnockout MiceLeadMediatingModelingMolecularMuscle CellsMyocardialMyocardial InfarctionMyocardial IschemiaMyocardial ReperfusionPathway interactionsPhosphotransferasesPhysiologicalProteasome InhibitionProtein IsoformsProteinsRegulationRoleSeminalSignal TransductionSpecificityTestingTherapeuticTimeUbiquitinationUnited StatesVirus Diseasesangiogenesiscardiac angiogenesiscardiac repaircardioprotectionclinically relevantdesignfrontierfunctional improvementheart damageimprovedin vivomouse modelmulticatalytic endopeptidase complexmyocardial damagemyocardial injuryneovascularizationnovelnovel strategiesnovel therapeutic interventionp38 Mitogen Activated Protein Kinasepre-clinicalprotective effectprotein degradationresponse
中文摘要
项目概述:组蛋白去乙酰化酶(hdac)作为一种重要的调控机制已被发现
英文摘要
Project Summary: Histone deacetylases (HDACs) have emerged as an important mechanism in regulating
cardiovascular diseases, and this holds promise in developing efficacious and clinical relevant therapeutic
strategies. This is a competitive renewal application to continue our studies of HDAC inhibition, which is critical
to the development of myocardial protection. During the past funding periods, we have well established that
inhibition of HDAC leads to a profound cardioprotection in attenuating myocardial I/R injury and reversing
cardiac remodeling. We have discovered that p38 is subject to regulation by acetylation, and p38 acetylation is
associated with HDAC inhibition-induced cardioprotective effects. We have demonstrated that HDAC inhibition
enhances cardiac repair through stimulating endogenous myoangiogenesis. Non-specific HDAC inhibition is
conceived as a major hurdle to achieving a promising therapeutic implication in the future. Our recent studies
have sought to explore the significance of HDAC isoforms in modulating cardiac pathophysiology. Our
interesting observation indicated that HDAC 4 isoform mainly involves HDAC inhibitors-induced cellular
protection, which was associated with the degradation of HDAC4 protein. p38-regulated/activated kinase
(PRAK), an identified novel and poorly characterized p38 substrate, is crucial to enhancing angiogenesis. Our
latest discovery indicates that genetic inhibition of PRAK eliminated HDAC inhibition-induced cardioprotection
and mitigated angiogenesis. These findings have led us to speculate that inhibition of HDAC4 and subsequent
PRAK activation occurs following HDAC inhibition, leading to protective effects. The proposed studies will test
the central hypothesis that HDAC4 inhibition-mediated PRAK activation induces myocardial protection
and angiogenesis. The specific aims of our proposed studies are the following: Specific Aim 1: Determine the
role of HDAC4 and its ubiquitination in mediating myocyte survival in hypoxia in vitro. Specific Aim 2:
Determine the in vivo role of cardiac-specific HDAC4 and HDAC inhibitor in myocardial ischemia and
angiogenesis. Specific Aim 3: Elucidate HDAC4 deletion or HDAC inhibitor-mediated protection and
angiogenesis via PRAK signaling. Specific Aim 4: Define preclinical perspectives of HDAC inhibitor-mediated
protection is proteasome pathway using a preclinical large animal model. Taken together, the proposed studies
of this competitive renewal application will for the first time establish that HDAC4 associated with PRAK
constitutes a crucial pathway to mediate myocardial injury and angiogenesis. All of these studies will not only
uncover a novel and exciting mechanism in cell signaling and myocardial protection, but will provide the
translational evidence that will have great potential to develop a new therapeutic approach to improve human
health.
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DOI:
10.1186/1475-2840-12-90
发表时间:
2013-06-18
期刊:
Cardiovascular diabetology
影响因子:
9.3
作者:
[Zhao TC]
通讯作者:
Zhao TC
Irisin Improves Differentiation through Preserved Mitochondrial Function in Mouse C2C12 Skeletal Muscle Cells.
鸢尾素通过保留小鼠 C2C12 骨骼肌细胞的线粒体功能来促进分化。
DOI:
--
发表时间:
2022
期刊:
FASEB journal : official publication of the Federation of American Societies for Experimental Biology
影响因子:
--
作者:
[Slate-Romano,JohnJ, Yano,Naohiro, Kulthinee,Supaporn, Wang,Lijiang, Zhang,LingZhang, Zhao,Ting]
通讯作者:
Zhao,Ting
DOI:
10.1002/jcb.25902
发表时间:
2017-08
期刊:
Journal of cellular biochemistry
影响因子:
4
作者:
[Zhang L, Du J, Yano N, Wang H, Zhao YT, Dubielecka PM, Zhuang S, Chin YE, Qin G, Zhao TC]
通讯作者:
Zhao TC
DOI:
10.1186/s12933-015-0262-8
发表时间:
2015-08-07
期刊:
Cardiovascular diabetology
影响因子:
9.3
作者:
[Chen Y, Du J, Zhao YT, Zhang L, Lv G, Zhuang S, Qin G, Zhao TC]
通讯作者:
Zhao TC
DOI:
10.1016/j.mce.2022.111676
发表时间:
2022-07-15
期刊:
MOLECULAR AND CELLULAR ENDOCRINOLOGY
影响因子:
4.1
作者:
[Slate-Romano, John J., Yano, Naohiro, Zhao, Ting C.]
通讯作者:
Zhao, Ting C.
共 24 条
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海外基金