Centre de Biophysique Moléculaire, CNRS UPR4301, Orleans cedex 2, 45071 France.
Ecole Doctorale 549, Sciences Biologiques & Chimie du Vivant, Université d'Orléans, Orleans, 45100 France.
Proc Natl Acad Sci U S A. 2022 Sep 20;119(38):e2209608119. doi: 10.1073/pnas.2209608119. Epub 2022 Sep 12.
Helicases are ubiquitous motor enzymes that remodel nucleic acids (NA) and NA-protein complexes in key cellular processes. To explore the functional repertoire and specificity landscape of helicases, we devised a screening scheme-Helicase-SELEX (Systematic Evolution of Ligands by EXponential enrichment)-that enzymatically probes substrate and cofactor requirements at global scale. Using the transcription termination Rho helicase of as a prototype for Helicase-SELEX, we generated a genome-wide map of Rho utilization () sites. The map reveals many features, including promoter- and intrinsic terminator-associated sites, bidirectional tandems, and cofactor-dependent sites with inverted G > C skewed compositions. We also implemented an H-SELEX variant where we used a model ligand, serotonin, to evolve synthetic sites operating in vitro and in vivo in a ligand-dependent manner. Altogether, our data illustrate the power and flexibility of Helicase-SELEX to seek constitutive or conditional helicase substrates in natural or synthetic NA libraries for fundamental or synthetic biology discovery.
解旋酶是普遍存在的分子马达酶,可在关键细胞过程中重塑核酸 (NA) 和 NA-蛋白质复合物。为了探索解旋酶的功能谱和特异性景观,我们设计了一种筛选方案——解旋酶 SELEX(通过指数富集的配体系统进化)——该方案可在全局范围内酶促探测底物和辅助因子的要求。我们使用转录终止 Rho 解旋酶作为 Helicase-SELEX 的原型,生成了 Rho 利用 ( ) 位点的全基因组图谱。该图谱揭示了许多特征,包括启动子和内在终止子相关的 位点、双向 串联和依赖辅助因子的 位点,其 G > C 倾斜组成反转。我们还实施了一种 H-SELEX 变体,其中我们使用模型配体 5-羟色胺来进化以配体依赖方式在体外和体内起作用的合成 位点。总的来说,我们的数据说明了 Helicase-SELEX 的强大功能和灵活性,可以在天然或合成的 NA 文库中寻找组成型或条件型解旋酶底物,用于基础或合成生物学发现。