TY - JOUR
T1 - High-level expression of his-tagged clostridial collagenase in Clostridium perfringens
AU - Tamai, Eiji
AU - Miyata, Shigeru
AU - Tanaka, Hiroaki
AU - Nariya, Hirofumi
AU - Suzuki, Motoo
AU - Matsushita, Osamu
AU - Hatano, Naoya
AU - Okabe, Akinobu
N1 - Funding Information:
Acknowledgments This work was supported by a Grant-in-Aid from the Japan Society for the Promotion of Science and a Grant-in-Aid from the Ministry of Education, Culture, Sports, Science and Technology (grant for Scientific Research C 18590428). We wish to thank Miss Yuki Taniguchi for the technical assistance and Mr. N. J. Halewood for assistance in preparing the manuscript.
PY - 2008/9
Y1 - 2008/9
N2 - Clostridium histolyticum collagenase is used to isolate cells from various organs and tissues for tissue engineering, and also to treat destructive fibrosis; thus, the demand for high-grade enzyme preparations is increasing. In this study, we constructed a plasmid encoding C. histolyticum type II collagenase (ColH) with a C-terminal hexahistidine tag (ColH-his) to facilitate the purification of the enzyme through immobilized metal affinity chromatography (IMAC). When ColH-his was expressed in a protease-deficient mutant of Clostridium perfringens, it was produced in the culture supernatant more efficiently than the untagged ColH. ColH-his exhibited the same hydrolytic activity as ColH against 4-phenylazobenzyloxy-carbonyl-Pro-Leu-Gly-Pro-d-Arg (Pz peptide), a synthetic collagenase substrate. From 100 ml of the culture supernatant, approximately 1 mg of ColH-his was purified by ammonium sulfate precipitation, IMAC, and high-performance liquid chromatography on a MonoQ column. When IMAC was performed on chelating Sepharose charged with Zn 2+ instead of Ni2+, a potential carcinogenic metal, the specific activities against Pz peptide and type I collagen decreased slightly. However, they were comparable to those reported for other recombinant ColHs and a commercial C. histolyticum collagenase preparation, suggesting that this expression system is useful for large-scale preparation of high-grade clostridial collagenases.
AB - Clostridium histolyticum collagenase is used to isolate cells from various organs and tissues for tissue engineering, and also to treat destructive fibrosis; thus, the demand for high-grade enzyme preparations is increasing. In this study, we constructed a plasmid encoding C. histolyticum type II collagenase (ColH) with a C-terminal hexahistidine tag (ColH-his) to facilitate the purification of the enzyme through immobilized metal affinity chromatography (IMAC). When ColH-his was expressed in a protease-deficient mutant of Clostridium perfringens, it was produced in the culture supernatant more efficiently than the untagged ColH. ColH-his exhibited the same hydrolytic activity as ColH against 4-phenylazobenzyloxy-carbonyl-Pro-Leu-Gly-Pro-d-Arg (Pz peptide), a synthetic collagenase substrate. From 100 ml of the culture supernatant, approximately 1 mg of ColH-his was purified by ammonium sulfate precipitation, IMAC, and high-performance liquid chromatography on a MonoQ column. When IMAC was performed on chelating Sepharose charged with Zn 2+ instead of Ni2+, a potential carcinogenic metal, the specific activities against Pz peptide and type I collagen decreased slightly. However, they were comparable to those reported for other recombinant ColHs and a commercial C. histolyticum collagenase preparation, suggesting that this expression system is useful for large-scale preparation of high-grade clostridial collagenases.
KW - Clostridium histolyticum
KW - Clostridium perfringens
KW - Collagenase
KW - Protein purification
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U2 - 10.1007/s00253-008-1592-1
DO - 10.1007/s00253-008-1592-1
M3 - Article
C2 - 18629492
AN - SCOPUS:50849106696
SN - 0175-7598
VL - 80
SP - 627
EP - 635
JO - Applied Microbiology and Biotechnology
JF - Applied Microbiology and Biotechnology
IS - 4
ER -