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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.

Biochemistry
|April 9, 1991
PubMed

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.

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