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Specificity studies on retroviral proteinase from myeloblastosis-associated virus
P Strop1, J Konvalinka, D Stys
1Institute of Organic Chemistry and Biochemistry, Czechoslovak Academy of Science, Prague.
Abstract:
The specificity of the p15 proteinase of myeloblastosis-associated virus (MAV) was tested with nonviral high molecular weight substrates and with synthetic peptides. Peptides with sequences spanning known cleavage sites in viral polyproteins of Rous sarcoma virus (RSV) and avian leukemia viruses, as well as in BSA and HSA, were synthesized, and the rate of their cleavage by the MAV proteinase was compared. Synthetic peptides require for successful cleavage at least 4 residues at the N-terminal side and 3 residues at the C-terminal side. The proteinase shows a preference for hydrophobic residues with bulky side chains (Met, Tyr, Phe) in P3, although Arg and Gln can also be accepted. Small hydrophobic residues are required in P2 and P2', and large hydrophobic residues (Tyr, Met, Phe/p-nitro-Phe) are preferred in both P1 and P1'. The difference between the specificity of the p15 proteinase and that of the HIV-1 proteinase mostly pertains to position P2' of the substrate, where bulkier side chains are accepted by the HIV-1 proteinase (Richards et al., 1990). A good chromogenic substrate for the MAV and RSV proteinases was developed and used to further characterize the MAV proteinase activity with respect to ionic strength and pH. The activity of the proteinase is strongly dependent on ionic strength and pH. Both the kcat and Km values contribute to a higher cleavage efficiency at higher salt concentrations and show a bell-shaped pH dependence curve with a sharp maximum at pH 5.5 (kcat) and 6.5 (Km).
Insights
The myeloblastosis-associated virus (MAV) p15 proteinase requires specific peptide sequences for cleavage, preferring hydrophobic residues. Its activity is highly sensitive to pH and ionic strength, with optimal function at pH 5.5-6.5.
Area of Science:
- Biochemistry
- Virology
- Enzymology
Background:
- The p15 proteinase is a key enzyme in the replication cycle of myeloblastosis-associated virus (MAV).
- Understanding its substrate specificity and activity is crucial for developing antiviral strategies.
Purpose of the Study:
- To characterize the substrate specificity of the MAV p15 proteinase.
- To investigate the influence of environmental factors (ionic strength, pH) on MAV proteinase activity.
- To compare MAV proteinase specificity with other viral proteinases like HIV-1 proteinase.
Main Methods:
- Synthesis of synthetic peptides spanning known cleavage sites.
- Cleavage assays using viral polyproteins and nonviral substrates (BSA, HSA).
- Development and use of a chromogenic substrate for detailed kinetic analysis.
Main Results:
- MAV p15 proteinase requires at least 4 N-terminal and 3 C-terminal residues for cleavage.
- Preference for hydrophobic residues (Met, Tyr, Phe) at P3, P1, and P1' positions.
- Optimal activity observed at higher salt concentrations, with a bell-shaped pH dependence peaking at pH 5.5 (kcat) and 6.5 (Km).
Conclusions:
- The MAV p15 proteinase exhibits distinct substrate specificity, particularly at the P2' position compared to HIV-1 proteinase.
- Proteinase activity is significantly modulated by ionic strength and pH, indicating environmental sensitivity.
- Developed chromogenic substrate is effective for studying MAV and RSV proteinases.