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YbxF and YlxQ are bacterial homologs of L7Ae and bind K-turns but not K-loops

机译:YbxF和YlxQ是L7Ae的细菌同源物,结合K圈但不结合K圈

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The archaeal protein L7Ae and eukaryotic homologs such as L30e and 15.5kD comprise the best characterized family of K-turn-binding proteins. K-turns are an RNA motif comprised of a bulge flanked by canonical and noncanonical helices. They are widespread in cellular RNAs, including bacterial gene-regulatory RNAs such as the c-di-GMP-II, lysine, and SAM-I riboswitches, and the T-box. The existence in bacteria of K-turn-binding proteins of the L7Ae family has not been proven, although two hypothetical proteins, YbxF and YlxQ, have been proposed to be L7Ae homologs based on sequence conservation. Using purified, recombinant proteins, we show that Bacillus subtilis YbxF and YlxQ bind K-turns (K d ~270 nM and ~2300 nM, respectively). Crystallographic structure determination demonstrates that both YbxF and YlxQ adopt the same overall fold as L7Ae. Unlike the latter, neither bacterial protein recognizes K-loops, a structural motif that lacks the canonical helix of the K-turn. This property is shared between the bacterial and eukaryal family members. Comparison of our structure of YbxF in complex with the K-turn of the SAM-I riboswitch and previously determined structures of archaeal and eukaryal homologs bound to RNA indicates that L7Ae approaches the K-turn at a unique angle, which results in a considerably larger RNA-protein interface dominated by interactions with the noncanonical helix of the K-turn. Thus, the inability of the bacterial and eukaryal L7Ae homologs to bind K-loops probably results from their reliance on interactions with the canonical helix. The biological functions of YbxF and YlxQ remain to be determined.
机译:古细菌蛋白L7Ae和真核同源物如L30e和15.5kD构成了最有特征的K-转角结合蛋白家族。 K-turns是一个RNA母题,由位于标准和非标准螺旋两侧的凸起组成。它们广泛存在于细胞RNA中,包括细菌基因调控RNA,例如c-di-GMP-II,赖氨酸和SAM-1核糖开关,以及T-box。 L7Ae家族的K-turn结合蛋白在细菌中的存在尚未得到证实,尽管基于序列保守性已经提出了两种假设的蛋白YbxF和YlxQ是L7Ae同源物。使用纯化的重组蛋白,我们显示枯草芽孢杆菌YbxF和YlxQ结合了K-turns(分别为K d〜270 nM和〜2300 nM)。晶体学结构确定表明YbxF和YlxQ均采用与L7Ae相同的总体折叠。与后者不同的是,两种细菌蛋白都不能识别K环,K环是缺乏K转向的典型螺旋的结构基序。此属性在细菌和真核家庭成员之间共享。将我们的YbxF结构与SAM-1核糖开关的K转角以及先前确定的与RNA结合的古细菌和真核同源物的复合物进行比较后发现,L7Ae以独特的角度接近K转角,从而导致更大的变化RNA-蛋白质界面主要由与K字形的非规范螺旋相互作用来决定。因此,细菌和真核L7Ae同源物无法结合K环可能是由于它们依赖于与经典螺旋的相互作用。 YbxF和YlxQ的生物学功能仍有待确定。

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