Novogy Inc., 85 Bolton St., Cambridge MA, USA.
Novogy Inc., 85 Bolton St., Cambridge MA, USA.
Curr Opin Biotechnol. 2020 Apr;62:239-247. doi: 10.1016/j.copbio.2019.12.022. Epub 2020 Jan 25.
Oleaginous yeasts natively produce surplus triacylglycerol lipid and can be engineered for higher yield and productivity. Most enzymatic steps of triacylglycerol production are characterized, but key parts of the pathway remain unknown. This introduces uncertainty to metabolic engineering strategy and the upper limit of achievable lipid yield. Here, we present our current understanding of the oleaginous yeast triacylglycerol biosynthesis pathway, review metabolic engineering strategies, and discuss bioprocess constraints on lipid production. We also present a simplified substrate allocation model capturing the interaction of percent lipid content on overall triacylglycerol yield, productivity, and fermentation cost, which should help frame achievable bioprocess metrics.
产油酵母天然产生过剩的三酰基甘油脂质,并且可以通过工程改造来提高产量和生产力。三酰基甘油生产的大多数酶促步骤已经得到了描述,但该途径的关键部分仍然未知。这给代谢工程策略和可实现的脂质产量上限带来了不确定性。在这里,我们介绍了我们目前对产油酵母三酰基甘油生物合成途径的理解,回顾了代谢工程策略,并讨论了生物过程对脂质生产的限制。我们还提出了一个简化的底物分配模型,该模型捕捉了脂质含量对三酰基甘油总产率、生产力和发酵成本的影响,这应该有助于确定可实现的生物过程指标。