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- 详细信息
- 询价记录
- 技术资料
- 保质期:
12个月
- 保存条件:
–20℃
- 库存:
99
- 英文名:
Recombinant HRV 3C Protease
- 供应商:
北京义翘神州科技股份有限公司
- 规格:
2000 U
Recombinant human rhinovirus (HRV 3C) protease
Product Advantages
Product Components
Description
Additional information
Factors that influence HRV 3C activity
Troubleshooting guide
Background information
References
| The recombinant human rhinovirus (HRV 3C) protease is used to remove fusion tags from proteins with the HRV 3C cleavage sequence (PreScission Site): Leu-Glu-Val-Leu-Phe-Gln↓Gly-Pro or LEVLFQ↓GP. The recombinant HRV 3C protease is a fusion protein of 22-kDa size, with a his tag. The enzyme retains high activity at 4℃, and can cleave the target protein in solution, in dialysis or on column. |
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Product Components
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| Activity Definition: | One unit of HRV 3C Protease is defined as the amount of enzyme that will cleave > 95% of 100μg Cleavage Control Protein in 150 mM NaCl, 50 mM Tris-HCl, pH 7.5 at 4℃ in 17h. | ||||||||||||
| Storage: | HRV 3C protease at –20℃; cleavage control protein and cleavage buffer at –20℃ or 4℃. | ||||||||||||
| Reconstitution: | Resuspend the enzyme powder with sterile water. Keep reconstituted enzyme at -20℃ in aliquots. | ||||||||||||
Description
| Experimental outline | ||||||||
| Workflow |
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| Cleavage | |||||||||||
| HRV 3C protease digest condition: |
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| Small scale optimization: | Due to various properties of fusion proteins, the ratio of HRV 3C protease: target protein, temperature, incubation time is recommended to be optimized for practical application. | ||||||||||
| The following protocol is a simple example to estimate the appropriate amount of the enzyme. | |||||||||||
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| The protease: target protein ratio can reach 1:800 in our experiment, but we recommend excessive use of the high specificity protease(1:100~1:25) to insure enzymatic digest completely in different experiments. If shorter incubation time is required, more amount of HRV 3C protease or higher temperature (RT) can be implemented. When the cleavage conditions are optimized at a small scale, scale up the cleavage proportionally according to specific application requirement. If IMAC Ni-charged resin is used after cleavage to remove the HRV 3C protease, the buffer of target protein should be exchanged into suitable buffers without EDTA or imidazole. Buffer exchange can be carried out by desalting or dialysis. |
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| Fig. The control protein was cleaved by HRV 3C protease at 4℃ for 16 h. | |||||||||||
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| Depending on the buffers used and their chemical components, HRV 3C Protease cleavage efficiency may be affected. The following table shows the relative activity of HRV 3C Protease under various conditions. | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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| The catalytic activities of 3C protease have been found to be essential for generation of mature viral proteins and functional viral enzymes and thus for viral replication in the human rhinoviruses (HRVs) which are members of the picornavirus family and are the major causative agents of common cold. HRVs contain a single strand, positive-sense RNA genome which encodes a single viral polyprotein. This polyprotein precursor is further processed by two viral proteases designated 2A and 3C protease. It is believed that the 2A protease makes the first cleavage at its own N-terminus to separate the structural capsid proteins from the nonstructural ones, while the 3C protease processes most of the remaining sites. | |
| Structure of HRV 3C protease | Sequence comparison, structure and mutational analysis, and studies with classic protease inhibitors have all shown that HRV 3C protease contains an active site cysteine residue as the nucleophile. However, its overall structures are more like serine proteases rather than the typical cysteine proteases. For HRV 3C protease, the catalytic triad is composed of His-Glu-Cys and is positioned as seen in serine proteases. HRV 3C protease will fold into two anti-parallel six-stranded β-barrels and the site cleft is located at the junction of the two β-barrels domains. |
| Activity of HRV 3C protease | In infected cells, HRV14 3C is able to process the polyprotein precursor at the scissile bonds formed between Gln-Gly, Gln-Ala, and Glu-Gly. However, in vitro studies have shown that this enzyme has a robust activity to cleave at the PreScission site (Leu-Glu-Val-Leu-Phe-Gln-↓-Gly-Pro) with high specificity. And the enzyme requires neither metal nor cofactors for activity. It has been demonstrated that the enzyme exhibits highest activity around neutral pH at temperatures ranging from 22 to 37℃, even retaining robust activity at 4℃. |
| Recombinant HRV 3C protease | Recombinant HRV 3C protease encoded by human rhinovirus 14 is a highly purified recombinant protease with a His-tag or GST-tag produced in E.coli system which has the activity as same as the wild type. The protease is a ~20kDa single-chain protein containing approximately 182 amino acids cover the 1538-1717 region of HRV 14's Genome polyprotein (Accession #: P03303) with calculated isoelectric point 8.46. |
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