Department of Molecular Biosciences, University of Texas at Austin, Austin, TX, 78712, USA.
Synthetic Biology HIVE, Department of Systems Biology, Harvard Medical School, Boston, MA, 02115, USA.
Commun Biol. 2024 Feb 9;7(1):163. doi: 10.1038/s42003-024-05849-8.
Bioengineers increasingly rely on ligand-inducible transcription regulators for chemical-responsive control of gene expression, yet the number of regulators available is limited. Novel regulators can be mined from genomes, but an inadequate understanding of their DNA specificity complicates genetic design. Here we present Snowprint, a simple yet powerful bioinformatic tool for predicting regulator:operator interactions. Benchmarking results demonstrate that Snowprint predictions are significantly similar for >45% of experimentally validated regulator:operator pairs from organisms across nine phyla and for regulators that span five distinct structural families. We then use Snowprint to design promoters for 33 previously uncharacterized regulators sourced from diverse phylogenies, of which 28 are shown to influence gene expression and 24 produce a >20-fold dynamic range. A panel of the newly repurposed regulators are then screened for response to biomanufacturing-relevant compounds, yielding new sensors for a polyketide (olivetolic acid), terpene (geraniol), steroid (ursodiol), and alkaloid (tetrahydropapaverine) with induction ratios up to 10.7-fold. Snowprint represents a unique, protein-agnostic tool that greatly facilitates the discovery of ligand-inducible transcriptional regulators for bioengineering applications. A web-accessible version of Snowprint is available at https://snowprint.groov.bio .
生物工程师越来越依赖配体诱导转录调控因子来实现化学响应控制基因表达,但可用的调控因子数量有限。新型调控因子可以从基因组中挖掘出来,但对其 DNA 特异性的认识不足,使得遗传设计变得复杂。在这里,我们提出了 Snowprint,这是一种简单而强大的生物信息学工具,用于预测调控因子:操纵子相互作用。基准测试结果表明,对于来自九个门的生物中超过 45%的经过实验验证的调控因子:操纵子对,以及跨越五个不同结构家族的调控因子,Snowprint 的预测结果非常相似。然后,我们使用 Snowprint 为 33 个来自不同系统发育的以前未表征的调控因子设计启动子,其中 28 个被证明可以影响基因表达,并且 24 个产生超过 20 倍的动态范围。然后,对一组新重新设计的调控因子进行了生物制造相关化合物的响应筛选,得到了新型传感器,用于检测聚酮(橄榄酸)、萜烯(香叶醇)、甾体(熊去氧胆酸)和生物碱(四氢罂粟碱),诱导比高达 10.7 倍。Snowprint 是一种独特的、与蛋白质无关的工具,极大地促进了用于生物工程应用的配体诱导转录调控因子的发现。Snowprint 的网络访问版本可在 https://snowprint.groov.bio 获得。