Novel function of a mitochondria phosphatase in cardiac development
Novel function of a mitochondria phosphatase in cardiac development
批准号:
10687847
负责人:
Ju Chen
金额:
$53.91万
依托单位国家:
美国
项目类别:
财政年份:
2021
资助国家:
美国
项目状态:
未结题
起止时间:
2021-07-01 至 2025-06-30
关键词:
AddressAffectApoptosisAttenuatedBioinformaticsBiological ProcessCardiacCardiac MyocytesCell Cycle ArrestCellsCrista ampullarisDNADataDefectDevelopmentEmbryoFibroblastsGenesGenetic TranscriptionHeartHeart AbnormalitiesHeterozygoteHomeostasisInner mitochondrial membraneKnock-outKnockout MiceLoxP-flanked alleleMedialMitochondriaMitochondrial ProteinsModelingMolecularMorphogenesisMorphologyMusMutationMyocardiumNuclearOxygen ConsumptionPathway interactionsPhenotypePhosphatidylinositol PhosphatesPhospholipidsPhosphoric Monoester HydrolasesPhosphorylationPhysiologicalPlayProcessProliferatingProtein DephosphorylationProtein Tyrosine PhosphataseRespirationRoleSignal TransductionSmooth MuscleSpecificityStressSuccinate DehydrogenaseThinnessZebrafishactivating transcription factor 4biological adaptation to stresscalcificationcardiogenesiscongenital heart disorderembryonic stem cellendoplasmic reticulum stressheart functionimplantationin vivoinhibitorinsightlipidomicsloss of functionmitochondrial dysfunctionmouse modelnovelphosphatidylglycerophosphatephosphoproteomicsresponsesenescencetranscriptome sequencing
中文摘要
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英文摘要
PROJECT SUMMARY
Mitochondria are essential for cardiomyocyte (CM) differentiation and cardiac morphogenesis. Mutations in
genes encoding mitochondrial proteins frequently result in congenital heart disease, highlighting the need to
elucidate key molecular pathway(s) in mitochondrial homeostasis during heart development. Protein Tyrosine
Phosphatase localized to the Mitochondrion 1 (PTPMT1) is a dual-specificity mitochondrial phosphatase
encoded by nuclear DNA. PTPMT1 is exclusively localized to mitochondria, being anchored to the inner
mitochondrial membrane. PTPMT1 is expressed in CMs throughout several developmental stages. To
determine the role of PTPMT1 in CMs, we generated a Ptpmt1 constitutive CM-specific knockout (cKO) mouse
model. Our preliminary data revealed that Ptpmt1 cKO mice display embryonic lethality. Ptpmt1 cKO mice
displayed thinner compact zone myocardium, with decreased CM proliferation. We also observed significantly
decreased mitochondrial respiration rate and abnormal mitochondrial morphology in Ptpmt1 cKO hearts,
demonstrating that PTPMT1 plays a critical role in developing CMs and in maintaining normal mitochondrial
homeostasis. We also examined previously described PTPMT1 substrates in Ptpmt1 cKO hearts relative to
controls, but could find no evidence to support them being direct substrates of PTPMT1 in CMs. To gain further
insight into pathways affected by loss of PTPMT1, we performed RNA-seq analysis of Ptpmt1 cKO hearts.
Bioinformatics analysis revealed that loss of PTPMT1 significantly activated the Activating Transcription Factor
4 (ATF4) pathway. ATF4 controls expression of a wide range of adaptive genes that allow cells to survive
periods of mitochondrial stress. However, under persistent stress conditions, ATF4 promotes induction of cell-
cycle arrest, apoptosis and senescence. Notably, reduced expression of ATF4 in global Atf4-haplodeficient and
smooth muscle-specific Atf4 knockout mice attenuates ER stress and reduces medial and atherosclerotic
calcification, highlighting new opportunities afforded by favoring a stress-relief adaptive effect over a
maladaptive effect by modulating ATF4 activation. The foregoing evidence leads us to the hypothesis that
PTPMT1 plays an essential role in cardiac development through modulation of specific substrates, and that
partial loss of ATF4, activated in response to mitochondrial stress in Ptpmt1 knockout CMs, may ameliorate,
but complete loss of ATF4 may exacerbate, Ptpmt1 cKO phenotypes. Accordingly, our specific aims are to: 1.
Elucidate the role of PTPMT1 in CM mitochondrial homeostasis and cardiac development and function by
analyzing Ptpmt1 cKO mice, and to identify endogenous substrates of PTPMT1 in CMs by performing
unbiased lipidomics and phosphoproteomics analyses; and 2. Determine the consequences of partial or
complete loss of ATF4 in CMs on phenotypes of Ptpmt1 cKO mice by analyzing CM-specific Ptpmt1
knockout/Atf4 heterozygous (hcKO) knockout mice and CM-specific Ptpmt1/Atf4 double knockout (dcKO) mice.
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会议论文
ATF4 a Novel Regulator of Cardiac Development
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批准号:10657081
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财政年份:2023
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Protein Kinase Novel 2 (PKN2) in heart
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Nuclear envelope protein LEMD2 in heart
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Nuclear envelope protein LEMD2 in heart
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批准号:10463758
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Novel function of a mitochondria phosphatase in cardiac development
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批准号:10181409
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资助金额:$55.3万
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依托单位:
PRDM16 in cardiac development
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批准号:10025986
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PRDM16 in cardiac development
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PRDM16 in cardiac development
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PRDM16 in cardiac development
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资助金额:$39.5万
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ALPK3 in cardiac function and disease
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资助金额:$39.5万
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The Cardiac Role of Filamin C
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批准号:10322727
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资助金额:$39.5万
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依托单位:
The role of Nexilin in cardiomyocyte and cardiomyopathy
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资助金额:$38.75万
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依托单位:
Adipocytes and cardiac remodeling
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批准号:9010674
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资助金额:$38.75万
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负责人:Ju Chen
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依托单位:
Adipocytes and cardiac remodeling
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批准号:9198055
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资助金额:$38.75万
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财政年份:2015
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负责人:Ju Chen
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依托单位:
Luma in Cardiac Function and Disease
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批准号:8748180
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资助金额:$38.75万
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财政年份:2014
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负责人:Ju Chen
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依托单位:
Luma in Cardiac Function and Disease
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批准号:8894593
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项目类别:
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资助金额:$38.17万
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财政年份:2014
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负责人:Ju Chen
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依托单位:
Luma in Cardiac Function and Disease
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批准号:9314615
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项目类别:
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资助金额:$38.75万
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财政年份:2014
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负责人:Ju Chen
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依托单位:
海外基金