| Literature DB >> 27756365 |
Guojun Wang1,2,3, Ting Zhang1,2, Haifeng Huang1,2, Shurong Hou2, Xiabin Chen1,2, Fang Zheng4,5, Chang-Guo Zhan6,7,8.
Abstract
BACKGROUND: A recently reported cocaine hydrolase (CocH3) fused with fragment crystallizable (Fc) region of human immunoglobulin G1, denoted as CocH3-Fc, is known as a promising therapeutic candidate for the treatment of cocaine overdose and addiction. A challenge for practical therapeutic use of this enzyme exists in the large-scale protein production and, therefore, it is interesting to identify a low-cost and feasible, sustainable source of CocH3-Fc production.Entities:
Keywords: Drug abuse; Fusion protein; Protein production; Therapeutic protein
Mesh:
Substances:
Year: 2016 PMID: 27756365 PMCID: PMC5069871 DOI: 10.1186/s12896-016-0302-9
Source DB: PubMed Journal: BMC Biotechnol ISSN: 1472-6750 Impact factor: 2.563
Fig. 1Diagram of constructs used in this study. CocH3: 1–529 amino acids of CocH3. Fc: Fc region of human IgG1. N-terminal ER-targeted signal: MDSKVTIICIRFLFWFLLLCMLIGKSHT. ER-retention signal: SEKDEL. Promoter: Cauliflower mosaic virus (CaMV) 35S promoter from pRTL2-GUS. Terminator: CaMV 35S terminator from pRTL2-GUS
Primers used in this study
| Primer | Sequence |
|---|---|
| 12-7_F_ENTR | 5′-CACCATGGAAGATGACATCATAATTGCAACA-3′ |
| 12-7_F_sig_ENTR | 5′-CACCATGGATAGCAAAGTCACAATCATATG-3′ |
| 12-7_R | 5′- ATAGAGCTCTTAGACTTTTGGAAAAAATGATGTCCAG-3′ |
| 12-7_R_sig | 5′-ATTTCAGAGTTCATCCTTCTCAGAGAGACCCACACAACTTTCTTTCT-3′ |
| FC_F | 5′-TTCCAAAAGTCGTGGAGCCTAAGTCCTGCGACAA-3′ |
| FC_R_ENTR | 5′-ATTTTTACCCGGAGACAGGGAGAG-3′ |
| FC_R_sig _ENTR | 5′-ATTTCAGAGTTCATCCTTCTCAGATTTACCCGGAGACAGGGAGAG-3′ |
Fig. 2Expression profiles of pCocH3 and pCocH3-Fc. For each protein, three leaves per day were harvested from the same layer of three independent plants on the indicated time, and mixed together for enzyme extraction. The crude extracts prepared from leaves were used for the initial enzyme activity assays (in triplicate). The protein concentration was calculated based on the measured enzyme activity (Vmax) and the known catalytic parameter (k cat = 5700 min−1)
Fig. 3Kinetic and electrophoresis analyses of pCocH3-Fc and CHO cells-expressed CocH3-Fc. a In vitro kinetic profile of pCocH3-Fc and CocH3-Fc. The assays were carried out in triplicate. b SDS-PAGE in which lane M is associated with protein marker, lane 1 with CocH3-Fc expressed in CHO cells, and lane 2 with pCocH3-Fc
Fig. 4In vivo profiles of pCocH3-Fc. a Time-dependent concentrations of the active enzyme pCocH3-Fc or PEG-pCocH3-Fc (PEGylated pCocH3-Fc) in the plasma of mice after IV administration of the enzyme (0.075 mg/kg) determined in triplicate. b Lethality of 180 mg/kg cocaine (IP) with or without pretreatment of 1 mg/kg pCocH3-Fc. The lethality tests were performed in triplicate (n = 3 for each group). For the mice survived from the acute cocaine toxicity testing, the observation of animal behaviors was kept for at least 1 h to make sure that they continued to behave normally after the survival