Department of Molecular Biosciences, The University of Texas at Austin, Austin, TX, USA.
McKetta Department of Chemical Engineering, The University of Texas at Austin, Austin, TX, USA.
RNA Biol. 2024 Jan;21(1):13-30. doi: 10.1080/15476286.2024.2429956. Epub 2024 Nov 22.
General RNA chaperones are RNA-binding proteins (RBPs) that interact transiently and non-specifically with RNA substrates and assist in their folding into their native state. In bacteria, these chaperones impact both coding and non-coding RNAs and are particularly important for large, structured RNAs which are prone to becoming kinetically trapped in misfolded states. Currently, due to the limited number of well-characterized examples and the lack of a consensus structural or sequence motif, it is difficult to identify general RNA chaperones in bacteria. Here, we adapted a previously published RNA regional accessibility probing assay to screen genome wide for intracellular factors in affecting RNA folding, among which we aimed to uncover novel RNA chaperones. Through this method, we identified eight proteins whose deletion gives changes in regional accessibility within the exogenously expressed group I intron ribozyme. Furthermore, we purified and measured properties of two of these proteins, YagL and PepA, which were especially attractive as general chaperone candidates. We showed that both proteins bind RNA and that YagL accelerates native refolding of the ribozyme from a long-lived misfolded state. Further dissection of YagL showed that a putative helix-turn-helix (HTH) domain is responsible for most of its RNA-binding activity, but only the full protein shows chaperone activity. Altogether, this work expands the current repertoire of known general RNA chaperones in bacteria.
通用 RNA 伴侣是一种 RNA 结合蛋白 (RBP),它们与 RNA 底物短暂且非特异性地相互作用,并协助其折叠成天然状态。在细菌中,这些伴侣蛋白既影响编码 RNA,也影响非编码 RNA,对于倾向于处于折叠错误状态的大型结构 RNA 尤为重要。目前,由于具有良好特征的例子数量有限,并且缺乏一致的结构或序列基序,因此难以在细菌中识别通用 RNA 伴侣。在这里,我们改编了以前发表的 RNA 区域可及性探测测定法,以在体内筛选影响 RNA 折叠的全基因组因素,我们旨在揭示新的 RNA 伴侣。通过这种方法,我们鉴定了 8 种蛋白质,它们的缺失会导致外显子组 I 内含子核酶的区域可及性发生变化。此外,我们纯化并测量了其中两种蛋白质(YagL 和 PepA)的性质,这两种蛋白质作为通用伴侣候选物特别有吸引力。我们表明,这两种蛋白质都能与 RNA 结合,并且 YagL 能加速核酶从持久的错误折叠状态下的天然重折叠。对 YagL 的进一步剖析表明,一个假定的螺旋-转角-螺旋 (HTH) 结构域负责其大部分 RNA 结合活性,但只有完整的蛋白质具有伴侣活性。总之,这项工作扩展了细菌中已知的通用 RNA 伴侣的当前目录。