The relationship of physicochemical properties and structure to the antioxidative activity of free amino acids in the aqueous Fenton system
Аутори
Milić Komić, Sonja
Bogdanović Pristov, Jelena

Mutavdzic, Dragosav
Savic, Aleksandar
Spasić, Mihajlo

Spasojevic, Ivan
Конференцијски прилог (Објављена верзија)

Метаподаци
Приказ свих података о документуАпстракт
Iron is essential for plant growth, metabolism of mitochondria and chloroplasts, and a wide assortment of enzymes. However, it is also involved in Fenton reaction that generates hydroxyl radical (HO•), the most reactive species in plants. The aim of our study was to examine the effects of amino acids on HO• production. The rank order according to antioxidative activity (AA) of amino acids in Fenton system was: Trp > Phe, Leu > Ile > His > Arg > Val > Lys, Tyr, Pro > Gln, Thr, Ser > Glu, Ala, Gly, Asn, Asp. Sulfur-containing amino acids generated different secondary reactive products, which were discriminated by EPR spin-trapping spectroscopy. AA showed positive correlation with hydrophobicity and negative correlation with polarity. HO•provoked oxidation of amino acids was strongly positively affected by hydrophobic hydration. Group contribution method showed that the reactivity of amino acids with HO• is defined by the properties of side-chains (the contribution of NH3+CHCOO− group and... antioxidative activity of Gly were next to zero). Our results might shed a new light on the role of iron in the regulation of free amino acids pool and on protein oxidation in plants. According to our findings, native proteins (with exposed polar residues) might not be particularly susceptible to oxidation by HO•. But once a protein is damaged and partially denatured it exposes hydrophobic side-chains and might become a likely target for HO•, thus potentially acquiring an antioxidative role. Further research on change of redox properties of proteins with denaturation is warranted.
Кључне речи:
amino acids / antioxidant / hydroxyl radical / EPRИзвор:
2nd International Conference on Plant Biology • 21st Symposium of the Serbian Plant Physiology Society • COST ACTION FA1106 QUALITYFRUIT Workshop Petnica Science Center 17-20 june, 2015, 2015, 106-Издавач:
- Serbian Plant Physiology Society
- Institute for Biological Research “Siniša Stanković” – National Institute of Republic of Serbia, University of Belgrade
Институција/група
Institut za multidisciplinarna istraživanjaTY - CONF AU - Milić Komić, Sonja AU - Bogdanović Pristov, Jelena AU - Mutavdzic, Dragosav AU - Savic, Aleksandar AU - Spasić, Mihajlo AU - Spasojevic, Ivan PY - 2015 UR - http://rimsi.imsi.bg.ac.rs/handle/123456789/1875 AB - Iron is essential for plant growth, metabolism of mitochondria and chloroplasts, and a wide assortment of enzymes. However, it is also involved in Fenton reaction that generates hydroxyl radical (HO•), the most reactive species in plants. The aim of our study was to examine the effects of amino acids on HO• production. The rank order according to antioxidative activity (AA) of amino acids in Fenton system was: Trp > Phe, Leu > Ile > His > Arg > Val > Lys, Tyr, Pro > Gln, Thr, Ser > Glu, Ala, Gly, Asn, Asp. Sulfur-containing amino acids generated different secondary reactive products, which were discriminated by EPR spin-trapping spectroscopy. AA showed positive correlation with hydrophobicity and negative correlation with polarity. HO•provoked oxidation of amino acids was strongly positively affected by hydrophobic hydration. Group contribution method showed that the reactivity of amino acids with HO• is defined by the properties of side-chains (the contribution of NH3+CHCOO− group and antioxidative activity of Gly were next to zero). Our results might shed a new light on the role of iron in the regulation of free amino acids pool and on protein oxidation in plants. According to our findings, native proteins (with exposed polar residues) might not be particularly susceptible to oxidation by HO•. But once a protein is damaged and partially denatured it exposes hydrophobic side-chains and might become a likely target for HO•, thus potentially acquiring an antioxidative role. Further research on change of redox properties of proteins with denaturation is warranted. PB - Serbian Plant Physiology Society PB - Institute for Biological Research “Siniša Stanković” – National Institute of Republic of Serbia, University of Belgrade C3 - 2nd International Conference on Plant Biology • 21st Symposium of the Serbian Plant Physiology Society • COST ACTION FA1106 QUALITYFRUIT Workshop Petnica Science Center 17-20 june, 2015 T1 - The relationship of physicochemical properties and structure to the antioxidative activity of free amino acids in the aqueous Fenton system SP - 106 UR - https://hdl.handle.net/21.15107/rcub_rimsi_1875 ER -
@conference{ author = "Milić Komić, Sonja and Bogdanović Pristov, Jelena and Mutavdzic, Dragosav and Savic, Aleksandar and Spasić, Mihajlo and Spasojevic, Ivan", year = "2015", abstract = "Iron is essential for plant growth, metabolism of mitochondria and chloroplasts, and a wide assortment of enzymes. However, it is also involved in Fenton reaction that generates hydroxyl radical (HO•), the most reactive species in plants. The aim of our study was to examine the effects of amino acids on HO• production. The rank order according to antioxidative activity (AA) of amino acids in Fenton system was: Trp > Phe, Leu > Ile > His > Arg > Val > Lys, Tyr, Pro > Gln, Thr, Ser > Glu, Ala, Gly, Asn, Asp. Sulfur-containing amino acids generated different secondary reactive products, which were discriminated by EPR spin-trapping spectroscopy. AA showed positive correlation with hydrophobicity and negative correlation with polarity. HO•provoked oxidation of amino acids was strongly positively affected by hydrophobic hydration. Group contribution method showed that the reactivity of amino acids with HO• is defined by the properties of side-chains (the contribution of NH3+CHCOO− group and antioxidative activity of Gly were next to zero). Our results might shed a new light on the role of iron in the regulation of free amino acids pool and on protein oxidation in plants. According to our findings, native proteins (with exposed polar residues) might not be particularly susceptible to oxidation by HO•. But once a protein is damaged and partially denatured it exposes hydrophobic side-chains and might become a likely target for HO•, thus potentially acquiring an antioxidative role. Further research on change of redox properties of proteins with denaturation is warranted.", publisher = "Serbian Plant Physiology Society, Institute for Biological Research “Siniša Stanković” – National Institute of Republic of Serbia, University of Belgrade", journal = "2nd International Conference on Plant Biology • 21st Symposium of the Serbian Plant Physiology Society • COST ACTION FA1106 QUALITYFRUIT Workshop Petnica Science Center 17-20 june, 2015", title = "The relationship of physicochemical properties and structure to the antioxidative activity of free amino acids in the aqueous Fenton system", pages = "106", url = "https://hdl.handle.net/21.15107/rcub_rimsi_1875" }
Milić Komić, S., Bogdanović Pristov, J., Mutavdzic, D., Savic, A., Spasić, M.,& Spasojevic, I.. (2015). The relationship of physicochemical properties and structure to the antioxidative activity of free amino acids in the aqueous Fenton system. in 2nd International Conference on Plant Biology • 21st Symposium of the Serbian Plant Physiology Society • COST ACTION FA1106 QUALITYFRUIT Workshop Petnica Science Center 17-20 june, 2015 Serbian Plant Physiology Society., 106. https://hdl.handle.net/21.15107/rcub_rimsi_1875
Milić Komić S, Bogdanović Pristov J, Mutavdzic D, Savic A, Spasić M, Spasojevic I. The relationship of physicochemical properties and structure to the antioxidative activity of free amino acids in the aqueous Fenton system. in 2nd International Conference on Plant Biology • 21st Symposium of the Serbian Plant Physiology Society • COST ACTION FA1106 QUALITYFRUIT Workshop Petnica Science Center 17-20 june, 2015. 2015;:106. https://hdl.handle.net/21.15107/rcub_rimsi_1875 .
Milić Komić, Sonja, Bogdanović Pristov, Jelena, Mutavdzic, Dragosav, Savic, Aleksandar, Spasić, Mihajlo, Spasojevic, Ivan, "The relationship of physicochemical properties and structure to the antioxidative activity of free amino acids in the aqueous Fenton system" in 2nd International Conference on Plant Biology • 21st Symposium of the Serbian Plant Physiology Society • COST ACTION FA1106 QUALITYFRUIT Workshop Petnica Science Center 17-20 june, 2015 (2015):106, https://hdl.handle.net/21.15107/rcub_rimsi_1875 .