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Published on: June 30, 2016
Royal Jelly Proteins Inhibit Macrophage Proliferation: Interactions with Native- and Oxidized-Low Density Lipoprotein
Akira Sato1,2, Hiroto Unuma3, Keiichi Ebina3,4
1Faculty of Pharmacy, Iryo Sosei University, 5-5-1, Chuodai-Iino, Iwaki, Fukushima, 970-8551, Japan. a-sato@isu.ac.jp.
Insights
Royal jelly (RJ) proteins, including royalisin, inhibit macrophage proliferation, suggesting potential therapeutic benefits for atherosclerosis by reducing plaque inflammation. Further research may uncover novel anti-atherosclerotic drugs from these RJ components.
Area of Science:
- Biochemistry
- Immunology
- Pharmacology
Background:
- Macrophage proliferation correlates with accumulation in atherosclerotic plaques, indicating its inhibition could be therapeutically beneficial.
- Royal jelly (RJ) contains royalisin, a peptide that binds to oxidized LDL (Ox-LDL), a key component of atherosclerotic lesions.
Purpose of the Study:
- To investigate the interaction of RJ proteins, including royalisin, with LDL and Ox-LDL.
- To determine the effect of RJ proteins on macrophage proliferation and lipid accumulation.
Main Methods:
- LDL oxidation was measured using thiobarbituric acid reactive substances and conjugated dienes assays.
- Protein-LDL/Ox-LDL interactions were analyzed using surface plasmon resonance.
- Macrophage proliferation and lipid accumulation were assessed in cultured J774A.1 cells.
Main Results:
- RJ proteins, royalisin, and MRJP1/MRJP3 degradation products induced LDL and Ox-LDL oxidation.
- These RJ proteins exhibited higher binding affinity to LDL than Ox-LDL.
- RJ proteins significantly inhibited macrophage proliferation in a concentration-dependent manner, independent of LDL/Ox-LDL presence, with minimal effect on lipid accumulation.
Conclusions:
- RJ proteins, including royalisin and MRJP1/MRJP3 degradation products, may offer therapeutic benefits for atherosclerosis by reducing plaque inflammation through macrophage proliferation inhibition.
- Further investigation of these RJ proteins could lead to the development of novel anti-atherosclerotic drugs.
Abstract:
Macrophage proliferation is known to correlate with macrophage accumulation in atherosclerotic plaque, and therefore its inhibition and secondary reduction of plaque inflammation may have therapeutic beneficial effects on atherosclerosis. Recently, we reported that a peptide corresponding to positions 41-51 of royalisin (which consists of 51 amino acid residues), a potent antibacterial protein contained in royal jelly (RJ), can specifically bind to oxidized LDL (Ox-LDL), a major components of atherosclerotic lesions. Here, we investigated the interaction of RJ proteins including royalisin with LDL and Ox-LDL. Measurement of LDL oxidation by the production of thiobarbituric acid reactive substances and conjugated dienes, and by electrophoretic mobility on polyacrylamide gel electrophoresis showed that RJ proteins including royalisin and the degradation products of major RJ protein (MRJP) 1 and MRJP3 can induce oxidation of LDL and Ox-LDL. Surface plasmon resonance experiments showed that these RJ proteins can exhibit much higher binding affinity to LDL than Ox-LDL (the equilibrium dissociation constant, KD = 8.35 and 49.65 μg proteins/mL for LDL and Ox-LDL, respectively). Experiments using cultured mouse J774A.1 macrophage cells proved that these RJ proteins can inhibit macrophage proliferation markedly and concentration-dependently, regardless of the absence or presence of LDL and Ox-LDL, but hardly affect lipid accumulation in macrophages. These results suggest that RJ proteins including royalisin and degradation products of MRJP1/MRJP3 may have therapeutic beneficial effects on atherosclerosis owing to the reduction of plaque inflammation. Further studies of these RJ proteins may lead to the discovery of novel anti-atherosclerotic drugs.
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