| Literature DB >> 31940098 |
Bin Yong1, Xueting Fei1, Huanhuan Shao1, Pan Xu1, Youwen Hu1, Weimin Ni1, Qiuju Xiao1, Xiang Tao1, Xinyi He1, Hong Feng2.
Abstract
Bacillus subtilis S1-4, isolated from chicken feather could efficiently degrade feathers by secreting several extracellular proteases. In order to get insight into the individual protease involved in keratin hydrolysis, a keratinase designed as BsKER71 was cloned and expressed in Bacillus subtilis WB600. In silico analysis revealed that BsKER71 protein contained a mature protein of 36.1 kDa. Further, purified BsKER71 could hydrolyze a variety of natural proteins, such as fibrous protein, collagen protein, casein, keratin and bovine serum albumin. In addition, this keratinase exhibited high enzyme activity in a wide range of pH and optimal pH of 10.0 and 9.0 in the hydrolysis of casein and keratin, respectively. Similarly, the optimal temperature was 55 °C and 50 °C for the hydrolysis of above two substrates, respectively. The hydrolytic activity was significantly inhibited by phenylmethanesulfonyl fluoride (PMSF), indicating the presence of serine residue in the active site. Moreover, ethylenediaminetetraacetic acid (EDTA) and phenanthroline moderately inhibited the hydrolytic activity. The catalytic activity was stimulated by Mg2+ and Ca2+, but greatly inhibited by Cu2+. Furthermore, several chemicals exhibited different effects on the hydrolysis of casein and keratin by BsKER71. These results provided a better understanding of BsKER71 from feather degrading bacterium B. subtilis S1-4.Entities:
Keywords: Bacillus subtilis S1-4; Feather degradation; Keratinase, BsKER71
Year: 2020 PMID: 31940098 PMCID: PMC6962420 DOI: 10.1186/s13568-019-0939-6
Source DB: PubMed Journal: AMB Express ISSN: 2191-0855 Impact factor: 3.298
Fig. 1The nucleotide and protein sequence of BsKER71. The underline indicates signal peptide, wave line mean peptidase inhibitor I9 domain, and triangles mean active sites
Fig. 2Clustering analyses of BsKER71 protein with published keratinases
Fig. 3Hydrolysis of natural protein substrates by the purified BsKER71. From left to right represented the following lane: fibrous, fibrous treated by BsKER71, collagen, collagen treated by BsKER71, casein, casein treated by BsKER71, keratin, keratin treated by BsKER71, BSA, BSA treated by BsKER71
Fig. 4Effects of pH, temperature and thermal stability on hydrolysis of casein and keratin by BsKER71. a Effects of pH (4.0–14.0) on the enzymatic activity for BsKER71 with two kinds of substrate (left: casein; right: keratin); b effect of temperature on the enzymatic activity for BsKER71 with two kinds of substrate (left: casein; right: keratin); c the thermal stability of BsKER71 at different temperature with two kinds of substrate (left: casein; right: keratin)
Fig. 5Effects of three protease inhibitors on protease activity of BsKER71 with two kinds of substrate (casein and keratin). From left to right represented the following treatment for BsKER71: CK, EDTA, PMSF, phenanthroline
Effect of various metal ions on hydrolytic activity of BsKER71
| Metal ions | Concentration (mmol/L) | Hydrolytic activity of different substrate | |
|---|---|---|---|
| Casein (%) | Keratin (%) | ||
| CK | 0 | 100.00 | 100.00 |
| Zn2+ | 2 | 97.00 | 95.48 |
| Co2+ | 2 | 93.73 | 92.70 |
| Mg2+ | 2 | 114.73 | 112.13 |
| Ca2+ | 2 | 116.64 | 115.81 |
| Mn2+ | 2 | 94.71 | 89.45 |
| Ni2+ | 2 | 95.36 | 94.21 |
| Cu2+ | 2 | 2.78 | 1.14 |
Effect of chemical reagents on hydrolytic activity of BsKER71
| Surfactant | Casein as substrate | Keratin as substrate | ||
|---|---|---|---|---|
| 1 mmol/L | 5 m mol/L | 1 mmol/L | 5 mmol/L | |
| CK | 100.00 | 100.00 | 100.00 | 100.00 |
| SDS | 103.74 | 97.12 | 86.28 | 0.00 |
| DTT | 103.74 | 96.92 | 100.87 | 91.55 |
| Triton-100 | 107.72 | 98.37 | 80.07 | 103.66 |
| Na2SO3 | 93.63 | 98.99 | 101.38 | 0.00 |
| DMSO | 107.53 | 16.17 | 103.70 | 0.00 |