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1.
Exp Cell Res ; 407(1): 112768, 2021 10 01.
Article in English | MEDLINE | ID: mdl-34370993

ABSTRACT

Atherosclerosis is the underlying contributing factor of cardiovascular disease, which is a process of inflammation and lipid-rich lesion. Macrophage-derived foam cell is a key hallmark of atherosclerosis and connected with various factors of lipid metabolism. Here, we showed that fatty acid binding protein 3 (FABP3) was upregulated in the aorta of ApoE-/- mice with high-fat-diet (HFD) feeding. Knockdown of FABP3 in HFD-fed ApoE-/- mice notably facilitated cholesterol efflux, inhibited macrophage foam cell formation, and thus prevented atherogenesis. Furthermore, FABP3 silencing decreased the expression of peroxisome proliferator-activated receptor γ (PPARγ). Mechanistic studies had disclosed the involvement of PPARγ signaling in balancing cholesterol uptake and efflux and diminishing foam cell formation. These findings firstly revealed an anti-atherogenic role of FABP3 silencing in preventing foamy macrophage formation partly through PPARγ, which might be a beneficial approach for therapying atherosclerosis.


Subject(s)
Atherosclerosis/metabolism , Atherosclerosis/pathology , Cholesterol/metabolism , Fatty Acid Binding Protein 3/deficiency , Macrophages/metabolism , Animals , Fatty Acid Binding Protein 3/metabolism , Lipid Metabolism/physiology , Macrophages/pathology , Macrophages, Peritoneal/metabolism , PPAR gamma/metabolism
2.
Am J Physiol Heart Circ Physiol ; 316(5): H971-H984, 2019 05 01.
Article in English | MEDLINE | ID: mdl-30735072

ABSTRACT

Fatty acid-binding protein 3 (FABP3), a low-molecular-weight protein, participates in lipid transportation, storage, signaling transduction, oxidation, and transcription regulation. Here, we investigated the expression and function of FABP3 in ischemic heart diseases and explored the mechanisms by which FABP3 affected remodeling after myocardial infarction (MI). We showed that ischemic or hypoxic conditions upregulated FABP3 expression in vivo and in vitro. Notably, overexpression of FABP3 induced more myocyte apoptosis in the infarction and border areas and aggravated cardiac dysfunction, with lower left ventricular ejection fraction. Meanwhile, overexpression of FABP3 drastically promoted death and apoptosis of neonatal rat ventricular cardiomyocytes under hypoxia. Furthermore, deficiency of FABP3 exerted protective effects against ischemic heart injuries by decreasing cardiac myocyte apoptosis and heart remodeling after MI. We found that overexpression of FABP3 upregulated the phosphorylation of MAPK signaling pathway and decreased phosphorylated Akt levels, which may account for the augmentation of apoptosis and remodeling after MI. To the best of our knowledge, this is the first study to demonstrate that deficiency of FABP3 would protect cardiac myocytes from apoptosis and alleviate cardiac remodeling after MI, suggesting FABP3 as a potential target to preserve cardiac function after MI. NEW & NOTEWORTHY It is an undisputable fact that myocyte apoptosis plays a crucial role in cardiac remodeling and the development of heart failure after myocardial infarction. Here, fatty acid-binding protein 3 deficiency improved myocardial structural remodeling and function by decreasing cell apoptosis and regulating MAPK signaling pathways. We suppose that fatty acid-binding protein 3 may be regarded as a potential intervention approach to preserve cardiomyocytes during myocardial infarction.


Subject(s)
Apoptosis , Fatty Acid Binding Protein 3/metabolism , Mitogen-Activated Protein Kinases/metabolism , Myocardial Infarction/enzymology , Myocytes, Cardiac/enzymology , Animals , Cell Hypoxia , Cells, Cultured , Disease Models, Animal , Fatty Acid Binding Protein 3/deficiency , Fatty Acid Binding Protein 3/genetics , Male , Mice, Inbred C57BL , Mice, Knockout , Myocardial Infarction/pathology , Myocardial Infarction/physiopathology , Myocardial Infarction/prevention & control , Myocytes, Cardiac/pathology , Phosphorylation , Proto-Oncogene Proteins c-akt , Rats , Signal Transduction , Stroke Volume , Ventricular Function, Left , Ventricular Remodeling
3.
Mol Neurobiol ; 55(4): 3577-3591, 2018 Apr.
Article in English | MEDLINE | ID: mdl-28516430

ABSTRACT

We previously reported that fatty acid-binding protein 3 (FABP3) knockout (Fabp3 -/-) mice exhibit abnormal dopamine-related behaviors such as enhanced dopamine D2 receptor antagonist-induced catalepsy behaviors. Here, we report that Fabp3 null mice exhibit cognitive deficits, hyperlocomotion and impaired fear extinction, and thus show post-traumatic stress disorder (PTSD)-like behaviors. Notably, chronic administration of ramelteon (1.0 mg/kg, p.o.), a melatonin receptor agonist, improved all PTSD-like behaviors tested in Fabp3 -/- mice. Relevant to mechanisms underlying impaired fear extinction, we observed significantly reduced levels of Ca2+/calmodulin-dependent protein kinase II (CaMKII) autophosphorylation without changes in ERK phosphorylation in the anterior cingulate cortex (ACC). Inversely, CaMKII autophosphorylation increased in the basolateral amygdala (BLA) but remained relatively unchanged in hippocampus of Fabp3 -/- mice. Likewise, the number of c-Fos-positive neurons in BLA significantly increased after exposure to contextual fear conditions but remained unchanged in the central nucleus of the amygdala (CeA). Importantly, chronic ramelteon administration (1.0 mg/kg, p.o.) restored abnormal c-Fos expression and CaMKII autophosphorylation in the ACC and BLA of Fabp3 -/- mice. Finally, the melatonin receptor antagonist luzindole (2.5 mg/kg, i.p.) blocked ramelteon-dependent improvements. Taken together, Fabp3 -/- mice show PTSD-like behaviors, and ramelteon is a likely attractive candidate for PTSD therapy.


Subject(s)
Behavior, Animal , Fatty Acid Binding Protein 3/deficiency , Indenes/therapeutic use , Stress Disorders, Post-Traumatic/drug therapy , Amygdala/metabolism , Amygdala/pathology , Amygdala/physiopathology , Animals , Calcium-Calmodulin-Dependent Protein Kinase Type 2/metabolism , Cognition Disorders/complications , Cognition Disorders/physiopathology , Extinction, Psychological/drug effects , Fatty Acid Binding Protein 3/metabolism , Fear/drug effects , Gyrus Cinguli/pathology , Gyrus Cinguli/physiopathology , Indenes/pharmacology , Mice, Inbred C57BL , Motor Activity/drug effects , Neurons/metabolism , Phosphorylation , Proto-Oncogene Proteins c-fos/metabolism , Receptors, Melatonin/metabolism , Stress Disorders, Post-Traumatic/complications , Stress Disorders, Post-Traumatic/physiopathology
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