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Possible interaction between the bacterial transcription factor ArtA and the eukaryotic RNA polymerase III promoter

机译:细菌转录因子ArtA与真核RNA聚合酶III启动子之间可能存在相互作用

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Eukaryotic RNA polymerase III (RNAP III) transcribes tRNA genes and short interspersed elements that have internal promoters consisting of A- and B-blocks. The B-block binding subunit of the transcription initiation factor TFIIIC binds to the B-block. The mobile bacterial insertion sequence (IS) 1 contains a RNAP III promoter-like sequence, which stimulates bacterial transcription along with the bacterial ArtA protein. Here, the DNA-binding ability of ArtA was examined in vitro using a simple, newly developed method. Various DNA fragments, including RNAP III promoter fragments, were separately incubated with purified ArtA, and then loaded onto a polyacrylamide gel. Since DNAs bound by ArtA remain in the gel wells during electrophoresis, SDS was added into the wells at the electrophoresis halfway point. It was hypothesized that SDS would dissociate the DNA-ArtA complexes in the wells, and then the DNAs would begin to migrate. In fact, new bands appeared in all of the lanes at similar intensities, indicating that ArtA binds nonspecifically to DNA. Therefore, labeled wild-type RNAP III promoter fragments were incubated with either the unlabeled wild-type or mutant fragments and ArtA, and electrophoresed. The B-block(-like) sequences of IS1, a human Alu element, and an anuran tRNA gene were important for binding to ArtA. Additionally, in silico analyses revealed the presence of the RNAP III promoter-like structures in the IS1 isoforms and the IS3 family elements. These results suggest the presence of parts of the RNAP III transcription machinery in bacteria, and might imply that its prototype existed in the common ancestor.
机译:真核RNA聚合酶III(RNAP III)转录tRNA基因和短散布的元件,这些元件具有由A和B嵌段组成的内部启动子。转录起始因子TFIIIC的B-块结合亚基与B-块结合。移动细菌插入序列(IS)1包含类似RNAP III启动子的序列,可刺激细菌ArtA蛋白与细菌转录。在这里,使用一种简单的新开发的方法在体外检查了ArtA的DNA结合能力。将各种DNA片段(包括RNAP III启动子片段)分别与纯化的ArtA孵育,然后加载到聚丙烯酰胺凝胶上。由于在电泳过程中与ArtA结合的DNA保留在凝胶孔中,因此在电泳中途将SDS添加到孔中。据推测,SDS将使孔中的DNA-ArtA复合物解离,然后DNA开始迁移。实际上,所有条带中都以相似的强度出现了新的条带,表明ArtA与DNA非特异性结合。因此,将标记的野生型RNAP III启动子片段与未标记的野生型或突变片段和ArtA一起孵育,并进行电泳。 IS1,人类Alu元件和anuran tRNA基因的B-block(样)序列对于与ArtA结合非常重要。另外,计算机分析表明在IS1同工型和IS3家族元件中存在RNAP III启动子样结构。这些结果表明细菌中存在部分RNAP III转录机制,并且可能暗示其原型存在于共同祖先中。

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