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1.
合成和表征了一种大环配体5,5,7,12,12,14-六甲基-1,4,8,11-四氮杂环十四烷-N/-乙酸(L),研究了金属铈离子和配体组成的体系催化对硝基苯酚磷酸二酯(BNPP)水解的动力学.结果表明:该体系在催化对硝基苯酚磷酸二酯(BNPP)水解方面表现出高的催化活性和稳定性,以及好的水溶性.通过对特征光谱和化学计算的分析表明,催化活性物种是金属铈和配体组成的配合物.基于光谱分析的结果,提出了BNPP催化水解的机理及得到研究结果的证明.  相似文献   

2.
双Schiff碱过渡金属配合物和胶束形成的金属胶束作为模拟磷酸二酯水解酶用于催化BNPP水解,探讨了催化作用机理;提出了一种金属胶束催化BNPP水解的动力学数学模型。研究表明,本文所用的金属胶束在适当酸度、温度、介质的条件下对催化BNPP水解具有较高的活性。  相似文献   

3.
本文合成了疏水性高氯酸二水(四胺)合钴(Ⅲ)配合物,研究了它与非离子表面活性剂Brij35形成的金属2胶束催化二(对硝基苯酚)磷酸二酯水解的动力学及其机理。结果表明此金属胶束对磷酸二酯水解的速率大约提高10^4倍,这主要是由于表面活性剂胶束的pH效应和浓聚效应所致,暗示着顺式二水类配合物形成的金属胶束是一个潜在的磷酸二酯水解剪切的催化剂。  相似文献   

4.
冠醚化Schiff 碱配合物金属胶束催化BNPP水解动力学   总被引:3,自引:0,他引:3  
研究了两种新的冠醚化Schiff 碱过渡金属配合物与表面活性剂Brij35(聚氧乙烯(23)十二烷基醚)形成的金属胶束对BNPP(对硝基苯酚磷酸二酯)的催化水解反应. 探讨了催化反应机理, 建立了一种金属胶束催化BNPP水解的动力学数学模型; 计算了模拟酶催化反应的相关参数和表观活化能. 结果表明, 此类金属胶束作为模拟水解金属酶对BNPP水解反应表现出良好的催化活性.  相似文献   

5.
合成了草酰胺桥联双核铜配合物(RCu2(H2O)2(ClO4)2)(A)和(R′Cu2(H2O)2(ClO4)2)(B)。研究了A、B与表面活性剂LSS和CTAB形成的金属胶束催化二(对硝基苯酚)磷酸二酯(BNPP)水解机理,建立了动力学模型。结果表明在25℃、pH=7的条件下,该类金属胶束对BNPP水解有催化作用,BNPP催化水解速率比其自水解速率提高1×106倍,这是由于双核铜配合物中两个铜离子的协同作用、表面活性剂胶束的浓聚效应和pH效应所致。因此含双水的草酰胺桥联双核铜配合物金属胶束是一较好的磷酸二酯水解酶的模拟模型。  相似文献   

6.
胡伟  李建章  王莹 《化学研究与应用》2007,19(12):1359-1363
在催化磷酸二酯水解的模拟酶模型中,配合物配体结构扮演了非常重要的角色[1-2]。由于冠醚环具有主客体识别功能,在酶学理论中把它作为模拟酶的第一代生物有机体。镶嵌有过渡金属离子的冠醚配合物对催化磷酸二酯水解具有很好的活性[3];Schiff碱过渡金属离子配合物对催化磷酸二酯水解也具有很好的活性[4]。因此,冠醚Schiff碱过渡金属离子配合物对催化磷酸二酯水解也应具有很好的活性,这已有所报道[5]。但冠醚结构和过渡金属离子相同而取代基不同的配合物作为模拟酶催化磷酸二酯水解还未见报道。本文按文献设计合成了三种冠醚结构相同而取代基…  相似文献   

7.
合成了一类新型多羟乙基双核大环多胺La(III)配合物, 其结构经1H NMR, MS, 元素分析等表征. 通过紫外分光光谱法和琼脂糖凝胶电泳技术, 研究了双核大环多胺La(III)配合物催化双对硝基苯酚磷酸二酯的水解反应和对质粒DNA(pUC18)的催化水解作用. 结果表明: 双核大环多胺La(III)配合物可以有效催化双对硝基苯酚磷酸二酯水解和促进质粒DNA在生理条件下的水解裂解. 双对硝基苯酚磷酸二酯的水解速率提高了2.36×104倍. 讨论了配合物结构对水解反应的影响.  相似文献   

8.
合成了一类新型多羟乙基双核大环多胺La(Ⅲ)配合物,其结构经1H NMR,MS,元素分析等表征.通过紫外分光光谱法和琼脂糖凝胶电泳技术,研究了双核大环多胺La(Ⅲ)配合物催化双对硝基苯酚磷酸二酯的水解反应和对质粒DNA(pUC18)的催化水解作用.结果表明:双核大环多胺La(Ⅲ)配合物可以有效催化双对硝基苯酚磷酸二酯水解和促进质粒DNA在生理条件下的水解裂解.双对硝基苯酚磷酸二酯的水解速率提高了2.36×104倍.讨论了配合物结构对水解反应的影响.  相似文献   

9.
本文合成了双核铜(II)和钴(II)配合物,并用动力学方法研究了它们对双-(对硝基苯基)磷酸二酯(BNPP)水解的催化活性。实验结果表明,单去质子化的肟基可以作为反应过程中的分子内亲核剂。双核铜(II)配合物比与其具有相似结构的单核配合物催化底物水解的活性高很多的事实表明,在双核配合物作催化剂的体系中很可能包含两个金属中心的双路易斯酸催化的机理。  相似文献   

10.
研究金属离子在金属酶中的作用机理以及用双核金属配合物模拟酶的催化中心和协同作用的研究倍受关注。镧系金属离子由于其特殊的化学结构对磷酸酯的水解有促进作用,本文研究发现环四烯四胺-Ce(Ⅲ)金属配合物对BNPP有显著的催化水解作用。  相似文献   

11.
The activities of the catalytic hydrolysis of phosphate diester(BNPP)[bis(p-nitrophenyl)phosphate diester]and plasmid DNA (pUC18)by mononuclear macrocyclic polyamine metal complexes have been investigated in this paper.The results showed that the highest activity in hydrolysis of BNPP was obtained with 1e-Zn(Ⅱ)complex(composed of lipophilic group)as catalyst.The hydrolysis rate enhancement is up to 3.64×10~4 fold.These metal complexes could effectively promote the cleavage of plasmid DNA(pUC18)at physiol...  相似文献   

12.
Artificial enzymes are non-protein molecules that are more simple than natural enzymes, but they also possess high efficiency and specificity. In recent years, the study of enzyme models is one of the most active fields1-2, especially chemical nuclease. Micelles, dynamic colloidal aggregates formed by amphipathic surfactant molecules, can mimic the hydrophobic structure of active site of enzymes because they offer a hydrophobic microenviornment which is similar to the important part located …  相似文献   

13.
大环多胺及其金属配合物与DNA的相互作用*   总被引:1,自引:0,他引:1  
周立宏  王娜  余孝其 《化学进展》2007,19(12):1909-1918
本文综述了近年来基于大环多胺及其金属配合物与DNA相互作用的研究进展,着重介绍本课题组在有关单双核、多核以及功能化大环多胺衍生物及其金属配合物与DNA相互作用方面的研究和发现,并对其在化学核酸酶方面的应用进行了讨论。在单双核大环多胺衍生物方面,我们分别合成了以吡啶、苯环、咪唑、三氮唑为侧臂的单核大环多胺金属配合物,同时合成了以刚性桥相连的双核配合物和以柔性链相连的双核配合物。并研究这些单双核大环多胺与DNA的相互作用,发现以刚性链相连的双核大环多胺金属配合物具有很好的切割DNA的性质,可以在低浓度、短时间内切断DNA。在功能化大环多胺方面,我们合成了含有碱基、PNA单体、咪唑鎓盐、冠醚、二茂铁等功能化基团的大环多胺衍生物及金属配合物,并研究了其与DNA的相互作用。在多核大环多胺方面,我们合成了基于大环多胺的寡聚物,研究发现该类物质可与DNA形成复合物,从而有效地保护DNA免于酶解。  相似文献   

14.
Nucleolytic activities of some new oxime-type ligand complexes were investigated by neutral agarose gel electrophoresis. Analysis of the cleavage products in agarose gel indicated that all complexes used converted supercoiled pUC18 plasmid DNA to its nicked or linear form. It was found that nucleolytic activities of the complexes depend on the complex concentration, reaction time and the presence of a cooxidant (magnesium monoperoxyphthalate, MMPP) in the reaction mixture. However, the complexes cleaved pUC18 plasmid DNA at all investigated pH values. Nucleolytic activities of complexes were investigated for different complex concentrations (0.1–100 μmol L−1), pH values (6.0–10.0) and reaction times (0–60 min). Molecular modeling studies performed by the Hyperchem Software together with DNA-binding studies showed that planar sites of the complexes intercalated into double stranded DNA. It can be concluded that all oxime-type ligand complexes used can be evaluated as nuclease mimics.  相似文献   

15.
Two neodymium(III) complexes, [Nd(Phen)(NO3)3(DMF)2] (1) and [Nd(Phen)2(NO3)3] (2) (phen = 1,10-phenanthroline; DMF = dimethylformamide), have been synthesized with a view to design artificial luminescent nucleases and nuclease mimics. The complexes were characterized by spectroscopic, powder, and single crystal XRD studies. The complexes, as expected, have luminescent properties. The DNA binding studies of both complexes have been carried out by spectroscopic studies e.g. electronic absorption (UV–Vis), fluorescence emission as well as viscosity measurements. The nuclease activity of the complexes has been established by gel electrophoresis using pUC19 circular plasmid DNA. The results of DNA binding as well as DNA cleavage activity and the model studies of interaction with pNPP indicate that both neodymium complexes demonstrate nuclease activity through phosphoester bond cleavage.  相似文献   

16.
缬氨酸Schiff碱金属铜配合物(PBP-L-Val-Cu)是新合成的一类非酶类切割工具, 合成了4种类型样品分别为L-CH3 Cu, D-CH3 Cu, L-Ph Cu和D-Ph Cu. 以质粒DNA(pUC18)为材料,分别对这4种类型化合物进行核酸切割效率的研究, 得出适合的反应体系后, 通过琼脂糖凝胶电泳对反应不同时间后核酸切割产物进行检测, 最终分别得到每种化合物将超螺旋型DNA切割成为开环型DNA和直线型DNA的切割效率, 经比较得出L-CH3 Cu型的切割效率是最快的. 将直线型DNA切割产物用琼脂糖凝胶回收试剂盒进行回收, 得到的直线型切割产物可以在T4连接酶的作用下重新连接起来. 利用酶切法对切口进行检测, 结果表明, 切割作用是具有特异性的. 另外, 该化合物对质粒pNQ216也具有切割活性.  相似文献   

17.
An aminonaphthoquinone ligand, L, and its metal complexes of general formula [MLCl2] {M = Co(II), Ni(II), Cu(II) and Zn(II)} have been synthesized and characterized by analytical and spectral techniques. Tetrahedral geometry has been assigned to Ni(II) and Zn(II) complexes and square planar geometry to Co(II) and Cu(II) complexes on the basis of electronic spectral and magnetic susceptibility data. The binding of complexes with bovine serum albumin (BSA) is relatively stronger than that of free ligand and alters the conformation of the protein molecule. Interaction of these complexes with CT-DNA has been investigated using UV-Vis and fluorescence quenching experiments, which show that the complexes bind strongly to DNA through intercalative mode of binding (Kapp 105 M?1). Molecular docking studies reiterate the mode of binding of these compounds with DNA, proposed by spectral studies. The ligand and its complexes cleave plasmid DNA pUC18 to nicked (Form II) and linear (Form III) forms in the presence of H2O2 oxidant. The in vitro cytotoxicity screening shows that Cu(II) complex is more potent against MCF-7 cells and Zn(II) complex exhibits marked cytotoxicity against A-549 cells equal to that of cisplatin. Cell imaging studies suggested apoptosis mode of cell death in these two chosen cell lines.  相似文献   

18.
Mononuclear copper(Ⅱ), nickel(Ⅱ) and cobalt(Ⅲ) tetracoordinate macrocyclic complexes were synthesized and spectroscopically characterized. The crystal structure of the three compounds were determined by X-ray crystallography. The electrochemical experimental results indicate that the three complexes could interact with DNA mainly by electrostatic interaction. The interaction of tetracoordinate macrocyclic cobalt(Ⅲ) complex with DNA was studied by cyclic voltammetry and UV-vis spectroscopy. The experimental results reveal that tetracoordinate macrocyc- lic cobalt(Ⅲ) complex could interact with DNA by electrostatic interaction to form a 1 : 1 DNA association complex with a binding constant of 7.50 ×10^3 L·mol^-1.  相似文献   

19.
Complexes between the tetrapyridyl pendant-armed macrocyclic ligand (L) and the trivalent lanthanide ions have been synthesized, and structural studies have been made both in the solid state and in aqueous solution. The crystal structures of the La, Ce, Pr, Gd, Tb, Er, and Tm complexes have been determined by single-crystal X-ray crystallography. In the solid state, all the cation complexes show a 10-coordinated geometry close to a distorted bicapped antiprism, with the pyridine pendants situated alternatively above and below the main plane of the macrocycle. The conformations of the two five-membered chelate rings present in the complexes change along the lanthanide series. The La(III) and Ce(III) complexes show a lambdadelta (or deltalambda) conformation, while the complexes of the heavier lanthanide ions present lambdalambda (or deltadelta) conformation. The cationic [Ln(L)]3+ complexes (Ln = La, Pr, Eu, Tb, and Tm) were also characterized by theoretical calculations at the density-functional theory (DFT) B3LYP level. The theoretical calculations predict a stabilization of the lambdalambda (or deltadelta) conformation on decreasing the ionic radius of the Ln(III) ion, in agreement with the experimental evidence. The solution structures show a good agreement with the calculated ones, as demonstrated by paramagnetic NMR measurements (lanthanide induced shifts and relaxation rate enhancements). The 1H NMR spectra indicate an effective D2 symmetry of the complexes in D2O solution. The 1H lanthanide induced shifts (LIS) observed for the Ce(III), Tm(III), and Yb(III) complexes can be fit to a theoretical model assuming that dipolar contributions are dominant for all protons. The resulting calculated values are consistent with highly rhombic magnetic susceptibility tensors with the magnetic axes being coincident with the symmetry axes of the molecule. In contrast with the solid-state structure, the analysis of the LIS data indicates that the Ce(III) complexes present a lambdalambda (or deltadelta) conformation in solution.  相似文献   

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