The influence of coordination compounds with malatogermanate/stannate anions and 1,10-phenanthroline cations of 3D metals on α-L-rhamnosidase activity of Penicillium tardum, Penicillium restrictum and Eupenicillium erubescens
O. V. Gudzenko, N. V. Borzova, L. D. Varbanets, I. I. Seifullina, O. E. Martsinko, E. V. Afanasenko
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引用次数: 0
Abstract
The search for effectors capable of influencing the catalytic activity of enzymes is an important area of modern enzymology. The aim of the study was to investigate the ability of 6 coordination compounds with malatogermanate/stannate anions and 1,10-phenanthroline cations of 3d metals to modify α-L-rhamnosidase activity of Penicillium tardum, Penicillium restrictum and Eupenicillium еrubescens strains. α-L-Rhamnosidase activity was determined by the Davis method using naringin as a substrate. It was demonstrated that [Ni(phen)3]2[{Sn(HMal)2(Mal)}Cl]•14H2O) in 0.1% concentration had the most pronounced activating effect on α-L-rhamnosidase activity of all strains studied. Noncompetitive inhibition of α-L-rhamnosidase in E. еrubescens by [Cu(phen)3]2[{Sn(HMal)2(Mal)}Cl]•10H2O was shown. The obtained results expand the idea of glycosidases possible activators and inhibitors and indicate the perspective of their use in modern biotechnological processes. Keywords: d-metals, double coordination compounds, Eupenicillium erubescens, germanium(IV), Penicillium restrictum, Penicillium tardum, stannum(IV), α-L-rhamnosidase
三维金属中含有苹果果酸盐/锡酸盐阴离子和1,10-菲罗啉阳离子的配位化合物对延迟青霉、限制青霉和绿绿青霉α- l -鼠李糖苷酶活性的影响
寻找能够影响酶的催化活性的效应器是现代酶学的一个重要领域。研究了6种具有苹果果酸盐/锡酸盐阴离子和三维金属1,10-菲罗啉阳离子的配位化合物对延迟青霉、限制青霉和丛绿绿青霉菌株α- l -鼠李糖苷酶活性的影响。以柚皮苷为底物,采用Davis法测定α- l -鼠李糖苷酶活性。结果表明,0.1%浓度的[Ni(phen)3]2[{Sn(HMal)2(Mal)}Cl]•14H2O]对各菌株α- l -鼠李糖苷酶活性的激活作用最为显著。结果表明,[Cu(phen)3]2[{Sn(HMal)2(Mal)}Cl]•10H2O对红花α- l -鼠李糖苷酶具有非竞争性抑制作用。所获得的结果扩展了糖苷酶可能的激活剂和抑制剂的想法,并指出了它们在现代生物技术过程中的应用前景。关键词:d金属,双配位化合物,绿绿青霉,锗,限制青霉,延迟青霉,锡,α- l -鼠李糖苷酶
期刊介绍:
The Ukrainian Biochemical Journal publishes original research papers, reviews and brief notes; papers on research methods and techniques; articles on the history of biochemistry, its development and prominent figures; discussion articles; book reviews; chronicles; etc. The journal scope includes not only biochemistry but also related sciences, such as cellular and molecular biology, bioorganic chemistry, biophysics, pharmacology, genetics, and medicine (medical biochemistry et al.) – insofar as the studies use biochemical methods and discuss biochemical findings.