Enhancement of the Rates for Insertion of Zinc(II) Ions into a Cationic Porphyrin Catalyzed by Poly(glutamate)

Int J Mol Sci. 2023 Dec 12;24(24):17371. doi: 10.3390/ijms242417371.

Abstract

The self-assembly of porphyrins onto polyelectrolytes could lead to interesting changes in their reactivity with respect to the bulk solution. Here, we investigated the kinetics of Zn2+ incorporation into tetra-cationic water-soluble 5,10,15,20-tetrakis-(N-methylpyridinium-4-yl)porphyrin (TMpyP(4)) in the presence of poly(L-glutamic acid) (PGA) in a pH range from 4 to 6.5. Under these conditions, the porphyrin electrostatically interacted with the polymer, which gradually switched from an α-helical to a random coil structure. The profile of the logarithm of the observed rate constant (kobs) versus the pH was sigmoidal with an inflection point close to the pH of the conformation transition for PGA. At a pH of 5.4, when PGA was in its highly charged random coil conformation, an almost 1000-fold increase in the reaction rates was observed. An increase in the ionic strength of the bulk solution led to a decrease in the metal insertion rates. The role of the charged matrix was explained in terms of its ability to assemble both reagents in proximity, in agreement with the theory of counter-ion condensation around polyelectrolytes in an aqueous solution.

Keywords: kinetics; polyelectrolytes; porphyrins; self-assembled systems.

MeSH terms

  • Catalysis
  • Cations
  • Glutamic Acid*
  • Poly A / chemistry
  • Polyelectrolytes
  • Porphyrins* / chemistry
  • Zinc

Substances

  • Glutamic Acid
  • Zinc
  • Polyelectrolytes
  • Porphyrins
  • Cations
  • Poly A