Physico-Chemical Changes Induced by Gamma Irradiation on Some Structural Protein Extracts

Author:

Stanca Maria1ORCID,Gaidau Carmen1ORCID,Zaharescu Traian2ORCID,Balan George-Alin3ORCID,Matei Iulia3ORCID,Precupas Aurica3ORCID,Leonties Anca Ruxandra3ORCID,Ionita Gabriela13ORCID

Affiliation:

1. Leather Research Department, Research and Development National Institute for Textiles and Leather-Division Leather and Footwear Research Institute, 93, Ion Minulescu Street, 031215 Bucharest, Romania

2. INCDIE ICPE CA, 313 Splaiul Unirii, 030138 Bucharest, Romania

3. “Ilie Murgulescu” Institute of Physical Chemistry of the Romanian Academy, 202 Splaiul Independentei, 060021 Bucharest, Romania

Abstract

In this study, the effect of gamma irradiation (10 kGy) on proteins extracted from animal hide, scales, and wool was evidenced by calorimetric (μDSC) and spectroscopic (IR, circular dichroism, and EPR) methods. Keratin was obtained from sheep wool, collagen and bovine gelatin from bovine hide, and fish gelatin from fish scales. The μDSC experiments evidenced that gamma irradiation influences the thermal stability of these proteins differently. The thermal stability of keratin decreases, while a resistance to thermal denaturation was noticed for collagen and gelatins after gamma irradiation. The analysis of the IR spectra demonstrated that gamma irradiation determines changes in the vibrational modes of the amide groups that are associated with protein denaturation, most meaningfully in the case of keratin. As evidenced by circular dichroism for all proteins considered, exposure to gamma radiation produces changes in the secondary structure that are more significant than those produced by UV irradiation. Riboflavin has different effects on the secondary structure of the investigated proteins, a stabilizing effect for keratin and fish gelatin and a destabilizing effect for bovine gelatin, observed in both irradiated and non-irradiated samples. The EPR spectroscopy evidences the presence, in the gamma-irradiated samples, of free radicals centered on oxygen, and the increase in their EPR signals over time due to the presence of riboflavin.

Funder

Romanian Ministry of Research, Innovation and Digitalization, CNDI-UEFISCDI

GAMMA-COLL

“Ilie Murgulescu” Institute of Physical Chemistry of the Romanian Academy

Publisher

MDPI AG

Subject

Molecular Biology,Biochemistry

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