Affiliation:
1. H. Buniatyan Institute of Bochemistry NAS RA
2. Orbeli Institute of Physiology NAS RA
3. H. Buniatyan Institute of Biochemistry NAS RA
4. Armenian National Agrarian University
Abstract
О2−-producing complexes or associates have recently been isolated from blood serum, goat milk, erythrocyte, leukocyte membranes, and medicinal plant membranes. Fe(III) ions in these complexes act as bridges for electron transfer from NADPH-containing lipoprotein (NCL) to molecular oxygen, reducing it up to О2−. On the other hand, NADPH oxidase (Nox) of erythrocytes and leukocytosis are activated by NCL in vitro. In fact, both serum and milk contain NCL. The main systems for the production of О2− in mammalian milk and blood, as previously stated, are polymorphonuclear leukocytes, as well as О2−-producing complex between NCL and Fe (III). At the same time, Fe(III) ions can be found in milk, and anemia can result from a Fe(III) deficiency in milk. The superoxide (О2−) - producing thermostable complex between NCL and Fe(III): NCL-Fe(III) was isolated and purified from raw and boiled cow milk, for the first time. The specific О2−-producing activity of NCL-Fe(III) complex from milk, before and after boiling, practically does not change as a result of milk boiling (this activity decreases by only 7-8%). After incubating an aqueous mixture of NCL (5 mg/ml) with an aqueous solution of Nox1 + Nox2 (erythrocytes or leukocytes membranes) isoforms, 5 mg/ml, at 37°C for 40 minutes, an ion exchange chromatography was performed on the column of DE cellulose, equilibrated by water at pH9.5. The hNCL-Nox associate eluates from this column with water at pH9.5 The specific О2−-producing activity of hNCL-Nox isoforms of EM and LM basically does not decrease when compared to the NCL-Fe(III) complex. This is a promising finding, suggesting that milk NCL has stimulating the Nox from erythrocytes or leukocyte membranes in vitro does not decrease even after boiling. In contrast to these О2−-producing associates or complexes, NCL isolated from them, suppresses the oxidation of adrenaline to adrenochrome, exerting a reducing-antioxidant effect due to NADPH electrons in its composition (the Cu, Zn-SOD does not inhibit this process). The NCL isolated from this complex, at the expense of NADPH, has a reductive (antioxidant) influence and forms a hybrid О2−-producing associate with isoforms of the NADPH oxidase from erythrocytes and leukocytes membranes. Thus the properties of the thermostable complex NCL-Fe(III): О2−-producing activity, as well as the reductive (antioxidant) activity of NCL, are practically preserved after milk boiling during 10-12 min.
Publisher
National Academy of Sciences of the Republic of Armenia
Reference17 articles.
1. Isoyan A. S. Simonyan K. V, Simonyan R. M, Babayan M. A, SimonyanG.M, Chavushyaнn V.A and Simonyan M.A (2019) Superoxide-producing lipoprotein fraction from Stevia leaves Definition of Specific Activity. BMC Complementary and Alternative Medicine 19, 88-94.DOI: 10.1186/s12906-019-2500-1.
2. Simonyan R.M., Chailyan S.G., Chavushyan, Simonyan K.V., Isoyan A.S., Babayan M.A., Simonyan G.M., Simonyan M.A. (2020) Superoxide-producing associate between NADPH oxidase and NADPH containing lipoprotein (NCL) from human blood erythrocytes and leukocytes membranes: activation of immune cells by NCL. Biol. Journal of Armenia, 4(72):47-54.
3. Simonyan M.A, Karapetyan A.V, Babayan M.A and Simonyan R.M. (1996) NADPH-containing Superoxide-Producing Lipoprotein Fraction of Blood Serum. Isolation, Purification, Brief Characterization, and Mechanism of Action. Biochemistry (Moskow) 61, 671-675.PMID: 8754277.
4. Симонян М.А., Карапетян А.В., Галстян Д.А., Симонян Р.М., Бабаян М.А. (1996) Супероксид-продуцирующий липопротеин как фактор подавления роста опухолей,повышения числа лейкоцитов, ускорения деления клеток в културе.//Биохимия,61(9):1578-1583.
5. Gayane Marmaryan, Maxim Simonyan, Hasmik Grigoryan, Ruzan Simonyan. Content of superoxide-Producing Associate of Saanen and Local Goats Milk.(2020) Advanced research in life sciences. 4, 2020, 54-57.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献