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Dive into the research topics where Yan-Yan Tang is active.

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Featured researches published by Yan-Yan Tang.


PLOS ONE | 2013

Antagonism of betulinic acid on LPS-mediated inhibition of ABCA1 and cholesterol efflux through inhibiting nuclear factor-kappaB signaling pathway and miR-33 expression.

Guo-Jun Zhao; Shi-Lin Tang; Yun-Cheng Lv; Xin-Ping Ouyang; Ping-Ping He; Feng Yao; Wu-Jun Chen; Qian Lu; Yan-Yan Tang; Min Zhang; Yuchang Fu; Da-Wei Zhang; Kai Yin; Chao-Ke Tang

ATP-binding cassette transporter A1 (ABCA1) is critical in exporting cholesterol from macrophages and plays a protective role in the development of atherosclerosis. The purpose of this study was to investigate the effects of betulinic acid (BA), a pentacyclic triterpenoid, on ABCA1 expression and cholesterol efflux, and to further determine the underlying mechanism. BA promoted ABCA1 expression and cholesterol efflux, decreased cellular cholesterol and cholesterol ester content in LPS-treated macrophages. Furthermore, we found that BA promoted ABCA1 expression via down-regulation of miR-33s. The inhibition of LPS-induced NF-κB activation further decreased miR-33s expression and enhanced ABCA1 expression and cholesterol efflux when compared with BA only treatment. In addition, BA suppressed IκB phosphorylation, p65 phosphorylation and nuclear translocation, and the transcription of NF-κB-dependent related gene. Moreover, BA reduced atherosclerotic lesion size, miR-33s levels and NF-κB activation, and promoted ABCA1 expression in apoE−/− mice. Taken together, these results reveal a novel mechanism for the BA-mediated ABCA1 expression, which may provide new insights for developing strategies for modulating vascular inflammation and atherosclerosis.


Atherosclerosis | 2013

Apelin-13 increases expression of ATP-binding cassette transporter A1 via activating protein kinase C α signaling in THP-1 macrophage-derived foam cells.

Xiao-Yan Liu; Qian Lu; Xin-Ping Ouyang; Shi-Lin Tang; Guo-Jun Zhao; Yun-Cheng Lv; Ping-Ping He; Hai-Jun Kuang; Yan-Yan Tang; Yuchang Fu; Da-Wei Zhang; Chao-Ke Tang

Apelin has an antiatherogenic function through activating protein kinase C (PKC) to initiate a series of cellular signaling pathways. PKC phosphorylates and stabilizes ATP-binding cassette transporter A1 (ABCA1) through inhibiting its degradation mediated by calpain. Thus, in the present study, we investigated whether apelin-13 affects expression of ABCA1 through PKC signaling. The results showed that apelin-13 dramatically increased cholesterol efflux from THP-1 macrophage-derived foam cells and reduced cellular cholesterol levels. ABCA1 protein but not mRNA levels were dramatically increased by apelin-13, and calpain-induced degradation of ABCA1 and calpain activity were suppressed with treatment of apelin-13. However, the effects of apelin-13 on ABCA1 protein expression, cellular cholesterol efflux and calpain activity were abolished by depletion of PKCα, suggesting the potential important role of PKCα. In addition, apelin-13 was shown to phosphorylate serine residues in ABCA1 through the PKCα pathway. Thus, apelin-13 appears to activate PKCα, phosphorylate ABCA1 and inhibit calpain-mediated proteolysis, thereby promoting cholesterol efflux and reducing foam cell formation. Our study herein described a possible mechanism for understanding the antiatherogenic effects of apelin on attenuating the progression of atherosclerosis.


International Journal of Cardiology | 2014

NF-κB suppresses the expression of ATP-binding cassette transporter A1/G1 by regulating SREBP-2 and miR-33a in mice.

Guo-Jun Zhao; Shi-Lin Tang; Yun-Cheng Lv; Xin-Ping Ouyang; Ping-Ping He; Feng Yao; Yan-Yan Tang; Min Zhang; Ya-Ling Tang; Deng-Pei Tang; Francisco S. Cayabyab; Guo-Ping Tian; Chao-Ke Tang

a Institute of Cardiovascular Research, Key Laboratory for Atherosclerology of Hunan Province, Life Science Research Center, University of South China, Hengyang, Hunan 421001, China b Department of Histology and Embryology, Guilin Medical University, Guilin, Guangxi 541004, China c Fourth year student in department of biochemistry, University of Saskatchewan, Saskatoon, Saskatchewan, Canada d Department of Physiology, University of Saskatchewan, Saskatoon, Saskatchewan, Canada e Department of Cardiovascular Medicine, Second Affiliated Hospital of University of South China, Hengyang 421001, Hunan, China


Biochemical and Biophysical Research Communications | 2014

The effects of miR-467b on lipoprotein lipase (LPL) expression, pro-inflammatory cytokine, lipid levels and atherosclerotic lesions in apolipoprotein E knockout mice.

Guo-Ping Tian; Yan-Yan Tang; Ping-Ping He; Yun-Cheng Lv; Xin-Pin Ouyang; Guo-Jun Zhao; Shi-Lin Tang; Jian-Feng Wu; Jia-Lin Wang; Juan Peng; Min Zhang; Yuan Li; Francisco S. Cayabyab; Xi-Long Zheng; Da-Wei Zhang; Wei-Dong Yin; Chao-Ke Tang

Atherosclerosis is a lipid disorder disease characterized by chronic blood vessel wall inflammation driven by the subendothelial accumulation of macrophages. Studies have shown that lipoprotein lipase (LPL) participates in lipid metabolism, but it is not yet known whether post-transcriptional regulation of LPL gene expression by microRNAs (miRNAs) occurs in vivo. Here, we tested that miR-467b provides protection against atherosclerosis by regulating the target gene LPL which leads to reductions in LPL expression, lipid accumulation, progression of atherosclerosis and production of inflammatory cytokines in apolipoprotein E knockout (apoE(-/-)) mice. Treatment of apoE(-/-) mice with intra-peritoneal injection of miR-467b agomir led to decreased blood plasma levels of total cholesterol (TC), triglyceride (TG), low density lipoprotein cholesterol (LDL-C), high density lipoprotein cholesterol (HDL-C), tumor necrosis factor-alpha (TNF-α), interleukin-6 (IL-6), IL-1β and monocyte chemotactic protein-1 (MCP-1). Using Western blots and real time PCR, we determined that LPL expression in aorta and abdominal cavity macrophages were significantly down-regulated in the miR-467b agomir group. Furthermore, systemic treatment with miR-467b antagomir accelerated the progression of atherosclerosis in the aorta of apoE(-/-) mice. The present study showed that miR-467b protects apoE(-/-) mice from atherosclerosis by reducing lipid accumulation and inflammatory cytokine secretion via downregulation of LPL expression. Therefore, targeting miR-467b may offer a promising strategy to treat atherosclerotic vascular disease.


Biochemical and Biophysical Research Communications | 2014

Urotensin II increases foam cell formation by repressing ABCA1 expression through the ERK/NF-κB pathway in THP-1 macrophages

Yan Wang; Jian-Feng Wu; Yan-Yan Tang; Min Zhang; Yuan Li; Kong Chen; Meng-Ya Zeng; Feng Yao; Wei Xie; Xi-Long Zheng; Gao-Feng Zeng; Chao-Ke Tang

OBJECTIVE Foam cell formation in the arterial wall plays a key role in the development of atherosclerosis. Recent studies showed that Urotensin II (U II) is involved in the pathogenesis of atherosclerosis. Here we examined the effects of human U II on ATP-binding cassette transporter A1 (ABCA1) expression and the underlying mechanism in THP-1 macrophages. METHODS AND RESULTS Cultured THP-1 macrophages were treated with U II, followed by measuring the intracellular lipid contents, cholesterol efflux and ABCA1 levels. The results showed that U II dramatically decreased ABCA1 levels and impaired cholesterol efflux. However, the effects of U II on ABCA1 protein expression and cellular cholesterol efflux were partially reversed by inhibition of extracellular signal regulated kinase 1/2 (ERK1/2) and nuclear factor kappa B (NF-κB) activity, suggesting the potential roles of ERK1/2 and NF-κB in ABCA1 expression, respectively. CONCLUSION Our current data indicate that U II may have promoting effects on the progression of atherosclerosis, likely through suppressing ABCA1 expression via activation of the ERK/NF-κB pathway and reducing cholesterol efflux to promote macrophage foam cell formation.


Biochemical and Biophysical Research Communications | 2014

Interleukin-27 inhibits foam cell formation by promoting macrophage ABCA1 expression through JAK2/STAT3 pathway.

Hui Fu; Yan-Yan Tang; Xin-Ping Ouyang; Shi-Lin Tang; Hua Su; Xiaotao Li; Li-ping Huang; Miao He; Yun-Cheng Lv; Ping-Ping He; Feng Yao; Yu-Lin Tan; Wei Xie; Min Zhang; Jian-Feng Wu; Yuan Li; Kong Chen; Dan Liu; Gang Lan; Meng-Ya Zeng; Xi-Long Zheng; Chao-Ke Tang

The purpose of this study is to determine whether IL-27 regulates macrophage ABCA1 expression, foam cell formation, and also explore the underlying mechanisms. Here, we revealed that IL-27 decreased lipid accumulation in THP-1 derived macrophages through markedly enhancing cholesterol efflux and increasing ABCA1 expression at both protein and mRNA levels. Our study further demonstrated that IL-27 increased ABCA1 level via activation of signal transducer and activator of transcription 3 (STAT3). Inhibition of Janus kinase 2, (JAK2)/STAT3 suppressed the stimulatory effects of IL-27 on ABCA1 expression. The present study concluded that IL-27 reduces lipid accumulation of foam cell by upregulating ABCA1 expression via JAK2/STAT3. Therefore, targeting IL-27 may offer a promising strategy to treat atherosclerotic vascular disease.


Biochemical and Biophysical Research Communications | 2014

Growth differentiation factor-15 induces expression of ATP-binding cassette transporter A1 through PI3-K/PKCζ/SP1 pathway in THP-1 macrophages.

Jian-Feng Wu; Yan Wang; Min Zhang; Yan-Yan Tang; Bo Wang; Ping-Ping He; Yun-Cheng Lv; Xin-Ping Ouyang; Feng Yao; Yu-Lin Tan; Shi-Lin Tang; Deng-Pei Tang; Francisco S. Cayabyab; Xi-Long Zheng; Da-Wei Zhang; Gao-Feng Zeng; Chao-Ke Tang

OBJECTIVE The aim of this study was to determine whether ATP-binding cassette transporter A1 (ABCA1) was up-regulated by growth differentiation factor-15 (GDF-15) via the phosphoinositide 3-kinase (PI3K)/protein kinase Cζ (PKCζ)/specificity protein 1 (SP1) pathway in THP-1 macrophages. METHODS AND RESULTS We investigated the effects of different concentrations of GDF-15 on ABCA1 expression in THP-1 macrophages. The results showed that GDF-15 dramatically increased cholesterol efflux and decreased cellular cholesterol levels. In addition, GDF15 increased ABCA1 mRNA and protein levels. The effects of GDF-15 on ABCA1 protein expression and cellular cholesterol efflux were abolished by wither inhibition or depletion of PI3K, PKCζ and SP1, respectively, suggesting the potential roles of PI3K, PKCζ and SP1 in ABCA1 expression. Taken together, GDF-15 appears to activate PI3K, PKCζ and SP1 cascade, and then increase ABCA1 expression, thereby promoting cholesterol efflux and reducing foam cell formation. CONCLUSION Our results suggest that GDF-15 has an overall protective effect on the progression of atherosclerosis, likely through inducing ABCA1 expression via the PI3K/PKCζ/SP1 signaling pathway and enhancing cholesterol efflux.


Biochimie | 2015

Betulinic acid downregulates expression of oxidative stress-induced lipoprotein lipase via the PKC/ERK/c-Fos pathway in RAW264.7 macrophages

Juan Peng; Yun-Cheng Lv; Ping-Ping He; Yan-Yan Tang; Wei Xie; Xiang-Yu Liu; Yuan Li; Gan Lan; Min Zhang; Chi Zhang; Jin-Feng Shi; Xi-Long Zheng; Weidong Yin; Chao-Ke Tang

BACKGROUND Atherosclerosis is a major cause of coronary artery disease, which is characterized by cellular lipid accumulation. Lipoprotein lipase (LPL) is a key enzyme in lipid metabolism. Studies have shown that macrophage-derived LPL exhibits proatherogenic properties, and plays a major role in lipid accumulation in macrophages. Evidence suggests that oxidative stress can effectively enhance macrophage LPL production. Betulinic acid (BA) is a pentacyclic lupane triterpene with a potent antioxidant activity. In this study, we investigated whether BA affects the expression of macrophage LPL and how it regulates cellular lipid accumulation. METHODS AND RESULTS We revealed that BA downregulated H2O2-simulated macrophage LPL protein, mRNA levels and its activity in both concentration- and time-dependent manners. Furthermore, BA decreased LPL-involved total cholesterol and triglyceride levels in macrophages. In addition, cellular lipid staining by Oil Red O showed that BA decreased cellular lipid droplet deposition. Next, we confirmed that pretreatment with BA decreased H2O2-induced production of intracellular reactive oxygen species in a concentration-dependent manner. Further studies demonstrated that BA inhibited H2O2-induced membrane translocation of PKC, phosphorylation of ERK1/2 and c-Fos. Finally, the induction of LPL production and activity by H2O2 was abolished by BA, inhibition of PKC or ERK or depletion c-Fos, respectively. CONCLUSIONS BA, through its role of antioxidant activity, attenuated macrophage-derived LPL expression and activity induced by oxidative stress, and effectively reduced cellular lipid accumulation, likely through inhibition of the pathways involving PKC, ERK and c-Fos. These effects of BA may contribute to its mitigation of atherosclerosis and help develop BA as a therapeutic compound in treatment of atherosclerosis.


Acta Agronomica Sinica | 2013

Research Advances of Intracellular Transport and Function of ABCA1

Yan-Yan Tang; Wu-Jun Chen; Qian Lu; Chao-Ke Tang

ATP-binding cassette transporter 1(ABCA1) mediated lipid efflux and evolved to maintain cholesterol homeostasis.Newborn ABCA1 should through intracellular transport and chemical modification,ultimately being a mature functional transporter with its function of lipid transport.The intracellular transport and correct localization of ABCA1 plays an important role in its function.ABCA1 researches focused on the lipid transport,and proposed the model of the various cholesterol efflux mechanisms,such as channel transport model,mushroom-like protuberances model and retroendocytosis model.Recent studies have shown,ABCA1 can regulate the plasma membrane lipid rafts,and involve in immune and inflammatory regulation.This review focuses on the current views on intracellular transport and various functions of ABCA1,in order to provide the new therapeutic targets for atherosclerosis-related diseases.


Atherosclerosis | 2014

MicroRNA-27a/b regulates cellular cholesterol efflux, influx and esterification/hydrolysis in THP-1 macrophages.

Min Zhang; Jian-Feng Wu; Wu-Jun Chen; Shi-Lin Tang; Zhong-Cheng Mo; Yan-Yan Tang; Yuan Li; Jia-Lin Wang; Xiang-Yu Liu; Juan Peng; Kong Chen; Ping-Ping He; Yun-Cheng Lv; Xin-Ping Ouyang; Feng Yao; Deng-Pei Tang; Francisco S. Cayabyab; Da-Wei Zhang; Xi-Long Zheng; Guo-Ping Tian; Chao-Ke Tang

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Chao-Ke Tang

University of South China

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Min Zhang

University of South China

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Ping-Ping He

University of South China

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Yun-Cheng Lv

University of South China

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Feng Yao

University of South China

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Xin-Ping Ouyang

University of South China

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Shi-Lin Tang

University of South China

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Guo-Jun Zhao

University of South China

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