4.7 Article

Structural basis for alpha fetoprotein-mediated inhibition of caspase-3 activity in hepatocellular carcinoma cells

Journal

INTERNATIONAL JOURNAL OF CANCER
Volume 141, Issue 7, Pages 1413-1421

Publisher

WILEY
DOI: 10.1002/ijc.30850

Keywords

alpha-fetoprotein; caspase-3; molecular docking; hepatocellular carcinoma

Categories

Funding

  1. National Natural Science Foundation of China [81660463, 81560450, 31560243, 81360307, 81260306, 81160261]
  2. Project of Hainan Province Innovative Team [2016CXTD008]
  3. Key Projects of Science and Technology, Hainan Province [ZDXM 20110038]
  4. New Century Excellent Talents in China [NCET-10-0124]
  5. Natural Science Foundation of Hainan Province [811208, 814293, 20168263, 817335]
  6. Fund of Hainan Provincial Society Development [2015SF03]
  7. Hainan Provincial Association for Science and Technology Program of Youth Science Talent and Academic Innovation [201514]

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Alpha-fetoprotein (AFP) is an early serum growth factor in the foetal liver development and hepatic carcinogenesis; However, the precise biological role of cytoplasmic AFP remains elusive. Although we recently demonstrated that cytoplasmic AFP might interact with caspase-3 and inhibit the signal transduction of apoptosis in human hepatocellular carcinoma (HCC) cells, the details of this interaction are not clear. To reveal the molecular relationship between AFP and caspase-3, we performed molecular docking, co-immunoprecipitation (Co-IP), laser confocal microscopy, site-directed mutagenesis and functional experiments to analyse the key amino acid residues in the binding site of caspase-3. The results of Co-IP, laser confocal microscopy and functional analyses were consistent with the computational model. We also used the model to explain why AFP cannot bind to caspase-8. These results provide the molecular basis for the AFP-mediated inhibition of caspase-3 activity in HCC cells. Altogether, we found that AFP interacts with caspase-3 through precise amino acids, namely loop-4 residues Glu-248, Asp-253 and His-257. The results further demonstrated that AFP plays a critical role in the inhibition of the apoptotic signal transduction that mediated by caspase-3. Thus, AFP might represent a novel biotarget for the therapy of HCC patients.

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