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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Interaction of Nucleotides with a Trinuclear Terbium(III)-Dizinc(II) Complex: Efficient Sensitization of Terbium Luminescence by Guanosine Monophosphate and Application to Real-Time Monitoring of Phosphodiesterase Activity
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Interaction of Nucleotides with a Trinuclear Terbium(III)-Dizinc(II) Complex: Efficient Sensitization of Terbium Luminescence by Guanosine Monophosphate and Application to Real-Time Monitoring of Phosphodiesterase Activity

机译:核苷酸与三核铽(III)的相互作用 - Dizinc(II)复合物:鸟苷肽单磷酸盐的高效敏化,磷酸二磷酸酯酶活性的实时监测

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摘要

An in-depth study of the interaction of a trinuclear terbium-(III)-dizinc(II) complex with an array of nucleotides differing in the type of nucleobase and number of phosphate groups, as well as cyclic versus acyclic variants, is presented. The study examined the nature of the interaction and the efficiency at which guanine was able to sensitize terbium(III) luminescence. Competitive binding and titration studies were performed to help establish the nature/mode of the interactions. These established that (1) interaction occursby the coordination of phosphate groups to zinc(II) (in addition to uridine in the case of uridine monophosphate), (2) acyclic nucleotides bind more strongly than cyclic counterparts because of their higher negative charge, (3) guanine-containing nucleotides are able to sensitize terbium(III) luminescence with the efficiency of sensitization following the order guanosine monophosphate (GMP) guanosine diphosphate guanosine triphosphate because of the mode of binding, and (4) nucleoside monophosphates bind to a single zinc(II) ion, whereas di- and triphosphates appear to bind in a bridging mode between two host molecules. Furthermore, it has been shown that guanine is a sensitizer of terbium(III) luminescence. On the basis of the ability of GMP to effectively sensitize terbium(III)-based luminescence while cyclic GMP (cGMP) does not, the complex has been utilized to monitor the catalytic conversion of cGMP to GMP by a phosphodiesterase enzyme in real time using time-gated luminescence on a benchtop fluorimeter. The complex has the potential to find broad application in monitoring the activity of enzymes that process nucleotides (co)substrates, including high-throughput drug-screening programs.
机译:提出了一种深入研究Trinclear铽 - (III) - Dizinc(II)复合物与核酸酶类型不同的核苷酸阵列以及磷酸基团的数量,以及环状与无循环变体的相互作用的研究。该研究检查了鸟嘌呤能够敏感铽(III)发光的互动的性质和效率。进行竞争性结合和滴定研究以帮助建立相互作用的性质/模式。这些确定(1)相互作用均匀脉磷酸盐基团与锌(II)的协调(除尿苷的尿苷中除尿苷中),由于其较高负电荷,(2)无循环核苷酸比环状对应物更强烈地结合,( 3)含鸟嘌呤的核苷酸能够在鸟苷(GMP)&GT的顺序(GMP)&GT之后致敏效率敏化铽(III)发光。鸟氨酸二磷酸&鸟氨酸三磷酸,因为结合方式,(4)核苷单磷酸盐与单锌(II)离子结合,而二磷酸和三磷酸盐似乎在两个宿主分子之间的桥接模式中结合。此外,已经表明鸟嘌呤是铽(III)发光的敏化剂。基于GMP以有效敏感铽(III)的发光的能力,同时环状GMP(CGMP)没有,该复合物已经利用了使用时间的实时将CGMP对GMP的催化转化为GMP的催化剂转化酶在台式荧光仪上进行的发光。该复合物有可能在监测过程核苷酸(CO)底物的酶活性的情况下寻找广泛的应用,包括高通量药物筛查计划。

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