首页> 外文期刊>Ukrainian Biochemical Journal >Complexes of cobalt (II, III) with derivatives of dithiocarbamic acid – effectors of peptidases of Bacillus thuringiensis and α-L-Rhamnozidase of Eupenicillium erubescens and Cryptococcus albidus
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Complexes of cobalt (II, III) with derivatives of dithiocarbamic acid – effectors of peptidases of Bacillus thuringiensis and α-L-Rhamnozidase of Eupenicillium erubescens and Cryptococcus albidus

机译:钴(II,III)与二硫代氨基甲酸衍生物的结合物–苏云金芽孢杆菌肽酶的作用因子以及铜绿假单胞菌和白隐隐球菌的α-L-鼠李糖苷酶

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The influence of cobalt (II, III) coordinative compounds with derivatives of dithiocarbamic acid on Bacillus thuringiensis IMV B-7324 peptidases with elastase and fibrinolytic activity and Eupenicillium erubescens and Cryptococcus albidus α-L-rhamnosidases have been studied. Tested coordinative compounds of cobalt (II, III) on the basis of their composition and structure are presented by 6 groups: 1) tetrachlorocobaltates (II) of 3,6-di(R,R′)-iminio-1,2,4,5-tetratiane – (RR′)sub2/subDitt[CoClsub4/sub]; 2) tetrabromocobaltates (II) of 3,6-di(R,R′)-iminio-1,2,4,5-tetratiane – (RR′)sub2/subDitt[CoBrsub4/sub]; 3) isothiocyanates of tetra((R,R′)-dithiocarbamatoisothiocyanate)cobalt (II) – [Co(RR′Ditc)sub4/sub](NCS)sub2/sub]; 4) dithiocarbamates of cobalt (II) – [Co(S2CNRR′)sub2/sub]; 5) dithiocarbamates of cobalt (III) – [Co(Ssub2/subCNRR′)sub3/sub]; 6) molecular complexes of dithiocarbamates of cobalt (III) with iodine – [Co(Ssub2/subCNRR′)sub3/sub]?2Isub2/sub. These groups (1-6) are combined by the presence of the same complexing agent (cobalt) and a fragment Ssub2/subCNRR′ in their molecules. Investigated complexes differ by a charge of intrinsic coordination sphere: anionic (1-2), cationic (3) and neutral (4-6). The nature of substituents at nitrogen atoms varies in each group of complexes. It is stated that the studied coordination compounds render both activating and inhibiting effect on enzyme activity, depending on composition, structure, charge of complex, coordination number of complex former and also on the enzyme and strain producer. Maximum effect is achieved by activating of peptidases B. thuringiensis IMV B-7324 with elastase and fibrinolytic activity. So, in order to improve the catalytic properties of peptidase 1, depending on the type of exhibited activity, it is possible to recommend the following compounds: for elastase – coordinately nonsaturated complexes of cobalt (II) (1-4) containing short aliphatic or alicyclic substituents at atoms of nitrogen and increasing activity by 17-100% at an average; for fibrinolytic – neutral dithiocarbamates of cobalt (II, III) (4-5) (by 29-199%). For increasing the fibrinolytic activity of peptidase it is better to use dibenzyl- or ethylphenyldithiocarbamates of cobalt (III), which increase activity by 15-40% at an average. The same complexes, and also compound {(CHsub2/sub)sub6/sub}sub2/subDitt[CoClsub4/sub] make an activating impact on α-L-rhamnosidase C. albidus (by 10-20%).
机译:研究了钴(II​​,III)配位化合物与二硫代氨基甲酸衍生物对苏云金芽胞杆菌IMV B-7324肽酶(具有弹性蛋白酶和纤溶活性),大戟鱼和隐孢子虫α-L-鼠李糖酶的影响。根据其组成和结构,经测试的钴(II,III)配位化合物由6组组成:1)3,6-di(R,R')-亚氨基-1,2,4的四氯钴酸酯(II) ,5-tetratiane –(RR') 2 Ditt [CoCl 4 ]; 2)3,6-di(R,R')-亚氨基-1,2,4,5-四丁烯四氢溴酸盐(II)–(RR') 2 Ditt [CoBr 4 ]; 3)四((R,R')-二硫代氨基甲酸酯异硫氰酸酯)(II)– [Co(RR'Ditc) 4 ](NCS) 2 ]的异硫氰酸酯; 4)钴(II)-[Co(S2CNRR') 2 ]的二硫代氨基甲酸酯; 5)钴(III)-[Co(S 2 CNRR') 3 ]的二硫代氨基甲酸酯; 6)钴(III)的二硫代氨基甲酸酯与碘– [Co(S 2 CNRR') 3 ] 2I 2 的分子配合物。这些基团(1-6)通过分子中相同的络合剂(钴)和片段S 2 CNRR'的存在而结合在一起。研究的复合物的不同之处在于其固有的配位球体不同:阴离子(1-2),阳离子(3)和中性(4-6)。氮原子上取代基的性质在每组配合物中均不同。据指出,所研究的配位化合物根据其组成,结构,配合物的电荷,配合物前体的配位数以及酶和菌株的产生,对酶的活性具有激活和抑制作用。通过激活具有弹性蛋白酶和纤溶活性的苏云金芽孢杆菌IMV B-7324肽酶可以达到最大的效果。因此,为了改善肽酶1的催化性能,取决于所显示的活性类型,可以推荐以下化合物:对于弹性蛋白酶-钴(II)(1-4)的配位不饱和配位化合物,其中含有短的脂肪族化合物或氮原子上的脂环族取代基,平均活性提高17-100%;用于纤维蛋白溶解–钴(II,III)(4-5)的中性二硫代氨基甲酸酯(29-199%)。为了增加肽酶的纤溶活性,最好使用钴(III)的二苄基或乙基苯基二硫代氨基甲酸酯,它们平均使活性提高15-40%。相同的络合物以及化合物{(CH 2 6 } 2 Ditt [CoCl 4 ]构成一个对α-L-鼠李糖苷酶C. albidus的活化作用(增加10-20%)。

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