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Nucleotide binding to human UMP-CMP kinase using fluorescent derivatives - a screening based on affinity for the UMP-CMP binding site.

机译:使用荧光衍生物的核苷酸与人UMP-CMP激酶的结合-一种基于对UMP-CMP结合位点的亲和力的筛选。

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摘要

Methylanthraniloyl derivatives of ATP and CDP were used in vitro as fluorescent probes for the donor-binding and acceptor-binding sites of human UMP-CMP kinase, a nucleoside salvage pathway kinase. Like all NMP kinases, UMP-CMP kinase binds the phosphodonor, usually ATP, and the NMP at different binding sites. The reaction results from an in-line phosphotransfer from the donor to the acceptor. The probe for the donor site was displaced by the bisubstrate analogs of the Ap5X series (where X = U, dT, A, G), indicating the broad specificity of the acceptor site. Both CMP and dCMP were competitors for the acceptor site probe. To find antimetabolites for antivirus and anticancer therapies, we have developed a method of screening acyclic phosphonate analogs that is based on the affinity of the acceptor-binding site of the human UMP-CMP kinase. Several uracil vinylphosphonate derivatives had affinities for human UMP-CMP kinase similar to those of dUMP and dCMP and better than that of cidofovir, an acyclic nucleoside phosphonate with a broad spectrum of antiviral activities. The uracil derivatives were inhibitors rather than substrates of human UMP-CMP kinase. Also, the 5-halogen-substituted analogs inhibited the human TMP kinase less efficiently. The broad specificity of the enzyme acceptor-binding site is in agreement with a large substrate-binding pocket, as shown by the 2.1 A crystal structure.
机译:ATP和CDP的甲基蒽基衍生物在体外用作人类UMP-CMP激酶(一种核苷拯救途径激酶)的供体结合和受体结合位点的荧光探针。像所有NMP激酶一样,UMP-CMP激酶在不同的结合位点结合磷供体(通常为ATP)和NMP。该反应是从供体到受体的在线磷酸转移引起的。供体位点的探针被Ap5X系列的双底物类似物取代(其中X = U,dT,A,G),表明受体位点的广泛特异性。 CMP和dCMP都是受体位点探针的竞争者。为了找到抗病毒和抗癌治疗的抗代谢物,我们已经开发了一种筛选无环膦酸酯类似物的方法,该方法基于人UMP-CMP激酶受体结合位点的亲和力。几种尿嘧啶乙烯基膦酸酯衍生物对人UMP-CMP激酶的亲和力与dUMP和dCMP相似,并且比cidofovir更好,后者是具有广泛抗病毒活性的无环核苷膦酸酯。尿嘧啶衍生物是抑制剂而不是人UMP-CMP激酶的底物。而且,5-卤素取代的类似物不太有效地抑制人TMP激酶。酶受体结合位点的广泛特异性与较大的底物结合口袋一致,如2.1 A晶体结构所示。

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