Literature DB >> 30426537

Programmed cell death protein 4 deficiency suppresses foam cell formation by activating autophagy in advanced glycation end-product low-density lipoprotein-induced macrophages.

Shan Li1,2, Guangdong Gao3, Fuyun Wu2, Dan Liu2, Hongyan Zhao2, Jing Ke2, Ying Liu2, Fei Li2, Jian Li2, Zongyun Chen2, Zhiming Tang2, Lei Bai3, Jinxuan Zhang2, Wei Zheng1, Xin Chen1.   

Abstract

BACKGROUND: Advanced glycation end-product is a modified form of low-density lipoprotein (AGE-LDL) and accelerates atherosclerosis through undefined mechanisms. Programmed cell death protein 4 (PDCD4), a transcriptional regulator, plays an important role in the regulation of autophagy. The aim of the present study was to investigate the role of PDCD4 involved in AGE-LDL-induced foam cell formation.
METHODS: The characterization of AGE-LDL was measured by the thiobarbituric assay and agarose gel electrophoresis in vitro. RAW264.7, THP-1 cell line and primary peritoneal macrophages of mice were transfected with shPDCD4 plasmid AGE-LDL-induced foam cell formation was stained by Oil Red, and the levels of autophagy and apoptosis were determined by Western blot analysis. Autophagosome was observed with immunofluorescence microscopy. Mitochondrial membrane potential and autophagic flux were assessed by flow cytometry.
RESULTS: AGE modification resulted in significant reduction of absorbance shown by thiobarbituric assay and augmentation of electrophoresis mobility. Further studies suggest that macrophages exposed AGE-LDL triggered autophagy in the early stage of foam cell formation. PDCD4 deficiency enhanced lipoautophagy but inhibited apoptosis and mitochondria dysfunction. Previous studies have been reported that autophagy is an adaptive response might prevent lesional macrophage apoptosis. In our study, we found PDCD4 deficiency attenuated apoptosis and AGE-LDL-induced foam cell formation relied on increased autophagy.
CONCLUSION: Our data revealed that PDCD4 deficiency can facilitate autophagy and benefit for AGE-LDL-induced foam cell formation.
© 2018 Wiley Periodicals, Inc.

Entities:  

Keywords:  advanced glycation end-product; atherosclerosis; autophagy; programmed cell death protein 4

Year:  2018        PMID: 30426537     DOI: 10.1002/jcb.28043

Source DB:  PubMed          Journal:  J Cell Biochem        ISSN: 0730-2312            Impact factor:   4.429


  1 in total

1.  Role of Phagocytosis in the Pro-Inflammatory Response in LDL-Induced Foam Cell Formation; a Transcriptome Analysis.

Authors:  Alexander N Orekhov; Nikita G Nikiforov; Vasily N Sukhorukov; Marina V Kubekina; Igor A Sobenin; Wei-Kai Wu; Kathy K Foxx; Sergey Pintus; Philip Stegmaier; Daria Stelmashenko; Alexander Kel; Alexei N Gratchev; Alexandra A Melnichenko; Reinhard Wetzker; Volha I Summerhill; Ichiro Manabe; Yumiko Oishi
Journal:  Int J Mol Sci       Date:  2020-01-27       Impact factor: 5.923

  1 in total

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