Wegner Scott A, Jiang Virginia, Cortez Jeremy D, Avalos José L
Department of Molecular Biology, Princeton University, Princeton, NJ, 08544, USA.
Department of Chemical and Biological Engineering, Princeton University, Princeton, NJ, 08544, USA.
Mol Syst Biol. 2025 Jun 11. doi: 10.1038/s44320-025-00113-5.
The in vivo continuous evolution system OrthoRep (orthogonal replication) is a powerful strategy for rapid enzyme evolution in Saccharomyces cerevisiae that diversifies genes at a rate exceeding the endogenous genome mutagenesis rate by several orders of magnitude. However, it is difficult to neofunctionalize genes using OrthoRep partly because of the way selection pressures are applied. Here we combine OrthoRep with optogenetics in a selection strategy we call OptoRep, which allows fine-tuning of selection pressure with light. With this capability, we evolved a truncated form of the endogenous monocarboxylate transporter JEN1 (JEN1t) into a de novo mevalonate importer. We demonstrate the functionality of the evolved JEN1t (JEN1t) in the production of farnesene, a renewable aviation biofuel, from mevalonate fed to fermentation media or produced by microbial consortia. This study shows that the light-induced complementation of OptoRep may improve the ability to evolve functions not currently accessible for selection, while its fine tunability of selection pressure may allow the continuous evolution of genes whose desired function has a restrictive range between providing effective selection and cellular viability.
体内连续进化系统OrthoRep(正交复制)是在酿酒酵母中快速进行酶进化的一种强大策略,它使基因多样化的速率比内源性基因组诱变率高出几个数量级。然而,使用OrthoRep使基因获得新功能很困难,部分原因在于施加选择压力的方式。在这里,我们将OrthoRep与光遗传学相结合,形成一种我们称为OptoRep的选择策略,该策略允许用光对选择压力进行微调。凭借这种能力,我们将内源性单羧酸转运蛋白JEN1的截短形式(JEN1t)进化为一种全新的甲羟戊酸导入蛋白。我们证明了进化后的JEN1t(JEN1t)在从添加到发酵培养基中的甲羟戊酸或由微生物群落产生的甲羟戊酸生产法尼烯(一种可再生航空生物燃料)中的功能。这项研究表明,OptoRep的光诱导互补作用可能会提高进化出目前无法进行选择的功能的能力,而其对选择压力的精细可调性可能允许对那些所需功能在提供有效选择和细胞活力之间具有限制范围的基因进行连续进化。