STRUCTURE OF A RICIN MUTANT SHOWING RESCUE OF ACTIVITY BY A NONCATALYTIC RESIDUE Article

cited authors

  • KIM, YS, MLSNA, D, MONZINGO, AF, READY, MP, FRANKEL, A, ROBERTUS, JD

abstract

  • Ricin A chain is an N-glycosidase which removes a single adenine base from a conservative loop of 28S rRNA, thereby inactivating eukaryotic ribosomes. The mechanism of action has been proposed to include transition-state stabilization of an oxycarbonium ion on the substrate ribose by interaction with Glu 177. Conversion of Glu 177 to Gln reduces activity nearly 200-fold [Ready, M. P., Kim, Y., & Robertus, J. D. (1991) Proteins: Struct., Funct., Genet. 10, 270-278] while conversion to Ala (EI77A) reduces activity only 20-fold [Schlossman, D., Withers, D., Welsh, P., Alexander, A., Robertus, J., & Frankel, A. (1989) Mol. Cell. Biol. 9, 5012-5021]. X-ray analysis of the latter mutant protein shows that a residue at the edge of the active site, Glu 208, rotates into the space left vacant by the mutation. Its rearranged carboxylate partially substitutes for that of Glu 177. This is equivalent to the rescue of enzyme activity by a second-site reversion. Kinetic analysis shows the E177A mutation affects k(cat) and not K(m), consistent with the notion that the carboxylate serves in transition-state stabilization.

Publication Date

  • March 31, 1992

webpage

published in

category

start page

  • 3294

end page

  • 3296

volume

  • 31

issue

  • 12

WoS Citations

  • 58

WoS References

  • 18