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Binding synergy as an essential step for tRNA editing and modification enzyme codependence in Trypanosoma brucei

机译:将Synergy作为Trypanosoma Brucei中TRNA编辑和修饰酶依赖性的基本步骤

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Transfer RNAs acquire a variety of naturally occurring chemical modifications during their maturation; these fine-tune their structure and decoding properties in a manner critical for protein synthesis. We recently reported that in the eukaryotic parasite, Trypanosoma brucei, a methylation and deamination event are unexpectedly interconnected, whereby the tRNA adenosine deaminase (TbADAT2/3) and the 3-methylcytosine methyltransferase (TbTrm140) strictly rely on each other for activity, leading to formation of m(3)C and m(3)U at position 32 in several tRNAs. Still however, it is not clear why these two enzymes, which work independently in other systems, are strictly codependent in T. brucei. Here, we show that these enzymes exhibit binding synergism, or a mutual increase in binding affinity, that is more than the sum of the parts, when added together in a reaction. Although these enzymes interact directly with each other, tRNA binding assays using enzyme variants mutated in critical binding and catalytic sites indicate that the observed binding synergy stems from contributions from tRNA-binding domains distal to their active sites. These results provide a rationale for the known interactions of these proteins, while also speaking to the modulation of substrate specificity between seemingly unrelated enzymes. This information should be of value in furthering our understanding of how tRNA modification enzymes act together to regulate gene expression at the post-transcriptional level and provide a basis for the interdependence of such activities.
机译:转移RNA在其成熟过程中获得各种天然存在的化学修饰;这些微调它们的结构和解码性质以蛋白质合成至关重要。我们最近报道,在真核寄生虫中,胰蛋白酶瘤Brucei,甲基化和脱胺发生事件意外地互连,由此TRNA腺苷脱氨酶(TBADAT2 / 3)和3-甲基胞嘧啶甲基转移酶(TBTRM140)严格依赖于彼此进行活动,导致在几个TrNA中形成m(3)c和m(3)u和m(3)u。然而,仍然,目前尚不清楚为什么在其他系统中独立工作的这两种酶在T.Brucei中严格依赖。在这里,我们表明这些酶表现出结合协同作用,或者在反应中加入在一起时,其结合亲和力的相互增加的相互增加的互补性。虽然这些酶直接相互作用,但是使用在关键结合和催化位点突变的酶变体的TRNA结合测定表明观察到的结合协同作用源于与其活性位点远离的TRNA结合结构域的贡献源。这些结果为这些蛋白质的已知相互作用提供了基本原理,同时还与看似无关的酶之间的底物特异性的调节。这些信息应该是有价值的,进一步了解TRNA修饰酶如何行动以调节在转录后水平的基因表达,并为这些活动的相互依存提供基础。

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