Identification of the iron entry channels in apoferritin. Chemical modification and spectroscopic studies
- 10 January 1989
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 28 (1) , 378-382
- https://doi.org/10.1021/bi00427a052
Abstract
The knowledge of the route through which iron can enter and leave the apoferritin shell is a prerequisite for the understanding of ferritin''s function. The involvement of the hydrophilic 3-fold channels in the iron uptake process has been studied by taking advantage of the reactivity of specific residues that line such channels, i.e., glutamic acid-127 and aspartic acid-130, the major Cd(II) binding sites, and cysteine-126. 113Cd NMR experiments have provided direct evidence for the competition between Fe(II) and Cd(II) binding to major Cd(II) binding sites on the protein and for a higher affinity of Fe(II) for these sites, in line with the well-known inhibitory effect of Cd(II) on iron uptake. Further evidence for the use of the 3-fold channels in the iron entry process has been obtained by means of chemical modification of Cys-126 with different mercurials. In particular, the introduction of the additional carboxylate carried by p-(chloromercuri)benzoate near Asp-127 and Glu-130 increases the initial rate of iron uptake and affects the coordination geometry of the metal in the Fe(III)-apoferritin complex as indicated by optical absorption and EPR data. The assignment of these effects to the carboxylate moiety of p-(chloromercuri)benzoate is brought out by the observation that the introduction in the 3-fold channel of the benzene ring only by means of phenylmercuric acetate has no effect on the initial iron uptake kinetics and on the spectroscopic properties of the Fe(III)-apoferritin complex.Keywords
This publication has 11 references indexed in Scilit:
- Ferritin as an iron-storage protein: mechanisms of iron uptakeJournal of Inorganic Biochemistry, 1986
- Metal ion complexes of apoferritin. Evidence for initial binding in the hydrophilic channels.Journal of Biological Chemistry, 1986
- Iron deposition in apoferritin. Evidence for the formation of a mixed valence binuclear iron complex.Journal of Biological Chemistry, 1985
- Binding of terbium to apoferritin: A fluorescence studyArchives of Biochemistry and Biophysics, 1983
- Iron binding by horse spleen apoferritin. A vanadyl(IV) EPR spin probe study.Journal of Biological Chemistry, 1982
- Structural heterogeneity and subunit composition of horse ferritinsBiochemistry, 1982
- A STUDY OF THE MECHANISM OF FERRITIN FORMATION - THE EFFECT OF PH, IONIC-STRENGTH AND TEMPERATURE, INHIBITION BY IMIDAZOLE AND KINETIC-ANALYSIS1980
- Comparison of the physical properties of chemically prepared and tissue-endogenous equine apoferritins.Journal of Biological Chemistry, 1976
- A Rapid and Sensitive Method for the Quantitation of Microgram Quantities of Protein Utilizing the Principle of Protein-Dye BindingAnalytical Biochemistry, 1976
- The determination of iron in plasma or serumBiochemical Journal, 1955