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October 1, 1982Proceedings of the National Academy of Sciences149 citations

Conformational flexibility in the active sites of aspartyl proteinases revealed by a pepstatin fragment binding to penicillopepsin.

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MJM. N. G. JamesASAnita R. SieleckiFSFrancesco G. Salituro

Key Points

  • This research aims to explore the conformational changes in aspartyl proteinases upon binding with pepstatin fragments.
  • Crystallization of the molecular complex between the esterified tripeptide fragment of pepstatin and native penicillopepsin.
  • Use of difference electron-density maps at 1.8-A resolution to determine binding modes.
  • Analysis of large beta loop conformational changes from Trp-71 to Gly-83 after inhibitor binding.
  • The binding mode of isovaleryl-Val-Val-StaOEt was clearly defined, showing how pepstatin fits into the enzyme's active site.
  • A significant conformational change was observed in the 'flap' region of penicillopepsin, confirming the role of flexibility in its mechanism.
  • The structure provides insights similar to substrate interactions, enhancing understanding of aspartyl proteinases.

Abstract

Crystals of the molecular complex between the esterified tripeptide fragment of pepstatin and the aspartyl proteinase penicillopepsin are isomorphous with crystals of native penicillopepsin. The difference electron-density map at 1.8-A resolution, computed by using the amplitude differences and refined phases of reflections from the crystal of native penicillopepsin, unambiguously showed the binding mode of isovaleryl-Val-Val-StaOEt, where StaOEt is the ethyl ester of statine (4S,3S)-4-amino-3-hydroxyl-6-methylheptanoic acid. In addition, a major conformational change in penicillopepsin involving the large beta loop of residues from Trp-71 to Gly-83 (the so-called "flap" region) occurs as a result of this inhibitor binding. This structural movement provides the first confirmation of the importance of enzyme flexibility in the aspartyl proteinase mechanism. The 3-hydroxyl group of the Statine residue and the carbonyl oxygen atom of the ethyl ester are situated on either side of the approximate plane containing the hydrogen-bonded carboxyl groups of Asp-33 and Asp-213. The observed binding mode of the pepstatin tripeptide fragment is similar to that predicted for the binding of good substrates with penicillopepsin James, M. N. G. (1980) Can. J. Biochem. 58, 251-271.

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Cite This Study

James et al. (1982) studied this question.

synapsesocial.com/papers/6a130f0ff7bd4f5c7da7467ahttps://doi.org/10.1073/pnas.79.20.6137
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