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A Comparative Study of the Structural Dynamics of Four Terminal Uridylyl Transferases

机译:四个末端铀酰转移酶的结构动力学的比较研究。

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摘要

African trypanosomiasis occurs in 36 countries in sub-Saharan Africa with 10,000 reported cases annually. No definitive remedy is currently available and if left untreated, the disease becomes fatal. Structural and biochemical studies of trypanosomal terminal uridylyl transferases (TUTases) demonstrated their functional role in extensive uridylate insertion/deletion of RNA. Trypanosoma brucei RNA Editing TUTase 1 (TbRET1) is involved in guide RNA 3’ end uridylation and maturation, while TbRET2 is responsible for U-insertion at RNA editing sites. Two additional TUTases called TbMEAT1 and TbTUT4 have also been reported to share similar function. TbRET1 and TbRET2 are essential enzymes for the parasite viability making them potential drug targets. For this study, we clustered molecular dynamics (MD) trajectories of four TUTases based on active site shape measured by Pocket Volume Measurer (POVME) program. Among the four TUTases, TbRET1 exhibited the largest average pocket volume, while TbMEAT1’s and TbTUT4’s active sites displayed the most flexibility. A side pocket was also identified within the active site in all TUTases with TbRET1 having the most pronounced. Our results indicate that TbRET1’s larger side pocket can be exploited to achieve selective inhibitor design as FTMap identifies it as a druggable pocket.
机译:非洲锥虫病发生在撒哈拉以南非洲的36个国家/地区,每年报告10,000例病例。当前尚无确切的治疗方法,如果不及时治疗,该病将致命。锥虫体末端尿嘧啶转移酶(TUTase)的结构和生化研究表明,它们在广泛的尿嘧啶插入/缺失RNA中发挥了功能性作用。布氏锥虫RNA编辑TUTase 1(TbRET1)参与指导RNA 3'的端尿和成熟,而TbRET2负责在RNA编辑位点进行U插入。据报道,另外两种名为TbMEAT1和TbTUT4的TUTase具有相似的功能。 TbRET1和TbRET2是寄生虫生存能力所必需的酶,使其成为潜在的药物靶标。在本研究中,我们基于Pocket Volume Measurer(POVME)程序测量的活性位点形状,对四种TUTase的分子动力学(MD)轨迹进行了聚类。在这四个TUTase中,TbRET1的平均口袋体积最大,而TbMEAT1和TbTUT4的活性位点则显示出最大的灵活性。在所有TUTase的活性位点内还发现了一个侧袋,其中TbRET1最明显。我们的研究结果表明,由于FTMap将TbRET1的侧袋设计为可药用的袋,因此可以利用其较大的侧袋进行选择性抑制剂设计。

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