Shiitake, Hua Gu · 2019 · Journal Article
High relevancePurification and Characterization of a Cadmium-Binding Protein from Lentinula edodes.
Lentinula edodes
Key points
- Many organisms possess the ability to produce metal-binding proteins to absorb cadmium
- Metallothioneins, an important family of cysteine-rich metal-binding proteins, have been isolated and well characterized
- However, Lentinula edodes may have a different type of cadmium-binding protein that contains fewer cysteine residues
- In the present study, we purified a cadmium-binding protein from L. edodes (LECBP) by gel filtration and anion exchange chromatography and then identified LECBP by LC-MS/MS. We found LECBP to be a novel cadmium-binding protein, which contained 220 amino acid residues but no cysteine residue
- LECBP had a high binding affinity for Cd(II) with a K d value of 97.3 μM. The percentages of α-helix, β-sheet, β-turn, and random coil in LECBP were 15.7%, 39.4%, 8.0%, and 37.1%, respectively
- In addition, high temperatures and an acidic environment influenced the conformation of LECBP. Our results will thus provide a new perspective to understand the mechanism of cadmium accumulation in L. edodes
Metadata-grounded summary
Citation abstract
Many organisms possess the ability to produce metal-binding proteins to absorb cadmium. Metallothioneins, an important family of cysteine-rich metal-binding proteins, have been isolated and well characterized. However, Lentinula edodes may have a different type of cadmium-binding protein that contains fewer cysteine residues. In the present study, we purified a cadmium-binding protein from L. edodes (LECBP) by gel filtration and anion exchange chromatography and then identified LECBP by LC-MS/MS. We found LECBP to be a novel cadmium-binding protein, which contained 220 amino acid residues but no cysteine residue. LECBP had a high binding affinity for Cd(II) with a K d value of 97.3 μM. The percentages of α-helix, β-sheet, β-turn, and random coil in LECBP were 15.7%, 39.4%, 8.0%, and 37.1%, respectively. In addition, high temperatures and an acidic environment influenced the conformation of LECBP. Our results will thus provide a new perspective to understand the mechanism of cadmium accumulation in L. edodes.
Citation
Dong XB, Liu Y, Feng X, Shi D, Bian YB, Ibrahim SA, et al. (2019). Purification and Characterization of a Cadmium-Binding Protein from Lentinula edodes. Journal of agricultural and food chemistry https://doi.org/10.1021/acs.jafc.8b05924 PMID: 30623660
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