Membrane-entrapped microperoxidase as a ‘solid-state’ promoter in the electrochemistry of soluble metalloproteins

Author:

Brunori M1,Santucci R1,Campanella L2,Tranchida G2

Affiliation:

1. C.N.R. Centro di Biologia Molecolare, Dipartimento di Scienze Biochimiche, 00185 Roma, Italy

2. Dipartimento di Chimica, Universita di Roma ‘La Sapienza’, 00185 Roma, Italy

Abstract

Immobilization of biological systems in solid matrices is presently of great interest, in view of the many potential advantages associated with both the higher stability of the immobilized macromolecules and the potential utilization for biotechnology. In the present paper the electrochemical behaviour of the undecapeptide from cytochrome c (called microperoxidase) tightly entrapped in cellulose triacetate membrane is reported; its utilization as ‘solid-state’ promoter in the electrochemistry of soluble metalloproteins is presented. The results obtained indicate that: (i) membrane-entrapped microperoxidase undergoes rapid reversible electron transfer at a glassy carbon electrode; (ii) the electrochemical process is diffusion-controlled; (iii) entrapped microperoxidase acts as ‘solid-state’ promoter in the electrochemistry of soluble cytochrome c and of azurin.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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