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Complexes of the uracil-DNA glycosylase inhibitor protein, Ugi, with Mycobacterium smegmatis and Mycobacterium tuberculosis uracil-DNA glycosylases

机译:尿嘧啶-DNA糖基糖基酶抑制剂蛋白,UGI的复合物,用分枝杆菌和结核分枝杆菌尿嘧啶尿嘧啶 - DNA糖基酶

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Uracil, a promutagenic base, appears in DNA either by deamination of cytosine or by incorporation of dUMP by DNA polymerases. This unconventional base in DNA is removed by uracil-DNA glycosylase (UDG). Interestingly, a bacteriophage-encoded short polypeptide, UDG inhibitor (Ugi), specifically inhibits UDGs by forming a tight complex. Three-dimensional structures of the complexes of Ugi with UDGs from Escherichia coli, human and herpes simplex virus have shown that two of the structural elements in Ugi, the hydrophobic pocket and the β1-edge, establish key interactions with UDGs. In this report the characterization of complexes of Ugi with UDGs from Mycobacterium tuberculosis, a pathogenic bacterium, and Mycobacterium smegmatis, a widely used model organism for the former, is described. Unlike the E. coli (Eco) UDG-Ugi complex, which is stable to treatment with 8?M urea, the mycobacterial UDG-Ugi complexes dissociate in 5–6?M urea. Furthermore, the Ugi from the complexes of mycobacterial UDGs can be exchanged by the DNA substrate. Interestingly, while EcoUDG sequestered Ugi into the EcoUDG-Ugi complex when incubated with mycobacterial UDG-Ugi complexes, even a large excess of mycobacterial UDGs failed to sequester Ugi from the EcoUDG-Ugi complex. However, the M. tuberculosis (Mtu) UDG-Ugi complex was seen when MtuUDG was incubated with M. smegmatis (Msm) UDG-Ugi or EcoUDG(L191G)-Ugi complexes. The reversible nature of the complexes of Ugi with mycobacterial UDGs (which naturally lack some of the structural elements important for interaction with the β1-edge of Ugi) and with mutants of EcoUDG (which are deficient in interaction with the hydrophobic pocket of Ugi) highlights the significance of both classes of interaction in formation of UDG-Ugi complexes. Furthermore, it is shown that even though mycobacterial UDG-Ugi complexes dissociate in 5–6?M urea, Ugi is still a potent inhibitor of UDG activity in mycobacteria.
机译:尿嘧啶,颁布的促销基础,通过脱核化胞嘧啶或通过DNA聚合酶掺入DOP的DNA中出现。通过Uracil-DNA糖基糖酶(UDG)除去DNA中的这种非传统碱。有趣的是,通过形成紧密的复合物,有趣地,一种噬菌体编码的短多肽,UDG抑制剂(UGI),具体抑制UDG。 UGI与大肠杆菌,人和疱疹病毒的UGI复合物的三维结构已经表明,UGI,疏水口袋和β1边缘中的两个结构元素建立了与UDG的关键相互作用。在本报告中,描述了从结核分枝杆菌,致病细菌和分枝杆菌的UGI与UGI的复合物的表征,是用于前者的广泛使用的模型生物体。与大肠杆菌(ECO)UDG-UGI复合物不同,含有8μm尿素的治疗稳定,分枝杆菌UDG-UGI复合物在5-6μm尿素中解散。此外,来自分枝杆菌UDG的复合物的UGI可以由DNA衬底交换。有趣的是,当Ecoudg与分枝杆菌UDG-UGI复合物孵育时Ecoudg螯合到Ecoudg-Ugi综合体中,即使是大量的分枝杆菌UDG也未能从Ecoudg-Ugi复合物中螯合UGI。然而,当将MTUUDG与M. Smogmatis(MSM)UDG-UGI或Ecoudg(L191G)-UNGI复合物一起温育MTUUDG时,可以看到M.结核病(MTU)UDG-UGI复合物。 UGI与分枝杆菌UDG的复合物的可逆性(其自然缺乏与UGI的β1缘相互作用的一些结构元素)和eCoudG的突变体(与UGI的疏水口袋相互作用)亮点udg-ugi复合物形成中两种相互作用的重要性。此外,表明即使分枝杆菌UDG-UGI复合物在5-6μm尿素中解离,UGI仍然是分枝杆菌中的UDG活性的有效抑制剂。

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