Department of Biology, Concordia University, Montréal, Québec H4B 1R6, Canada.
Centre for Applied Synthetic Biology, Concordia University, Montréal, Québec H4B 1R6, Canada.
ACS Synth Biol. 2021 Nov 19;10(11):2896-2903. doi: 10.1021/acssynbio.1c00420. Epub 2021 Nov 8.
While nepetalactone, the active ingredient in catnip, is a potent insect repellent, its low accumulation limits its commercial viability as an alternative repellent. Here we describe for the first time nepetalactone synthesis in , enabling sustainable and scalable production. Nepetalactone production required introducing eight exogenous genes including the cytochrome P450 geraniol-8-hydroxylase, the bottleneck of the heterologous pathway. Combinatorial assessment of geraniol-8-hydroxylase and cytochrome P450 reductase variants, and copy-number variations were used to overcome this bottleneck. We found that several reductases improved hydroxylation activity and increasing geraniol-8-hydroxylase gene copy number improved 8-hydroxygeraniol titers. The accumulation of an unwanted metabolite implied inefficient channeling of carbon through the pathway. With the native yeast old yellow enzymes previously shown to use monoterpene intermediates as substrates, both homologues were deleted. These deletions increased 8-hydroxygeraniol yield, resulting in 3.10 mg/L/OD of nepetalactone from simple sugar in microtiter plates. This optimized pathway will benefit the development of high yielding strains for the scale up production of nepetalactone.
荆芥内酯是猫薄荷中的活性成分,是一种有效的驱虫剂,但由于其在昆虫体内积累水平低,限制了其作为替代驱虫剂的商业可行性。在这里,我们首次在酵母中实现了荆芥内酯的合成,从而实现了可持续和规模化生产。荆芥内酯的生产需要引入包括细胞色素 P450 香叶醇-8-羟化酶在内的 8 个外源基因,而该酶是异源途径的瓶颈。我们通过组合评估香叶醇-8-羟化酶和细胞色素 P450 还原酶变体以及拷贝数变异来克服这一瓶颈。我们发现,几种还原酶提高了羟化活性,增加香叶醇-8-羟化酶基因的拷贝数可以提高 8-羟基香叶醇的产量。一种不需要的代谢产物的积累意味着碳在途径中的流动效率低下。由于先前已经证明酵母天然的老黄酶可以利用单萜中间体作为底物,因此我们删除了这两个同源物。这些缺失增加了 8-羟基香叶醇的产量,使得在微量滴定板中从简单糖中生产出 3.10 毫克/升/光密度的荆芥内酯。这种优化后的途径将有助于开发高产菌株,以扩大荆芥内酯的生产规模。