首页> 外文会议>Conference on biochemical and molecular engineering >YARROWIA LIPOLYTICA: A VERSATILE MICROBIAL WORKHORSE FOR EXPANDING NATURE'S BIOSYNTHETIC CAPACITY
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YARROWIA LIPOLYTICA: A VERSATILE MICROBIAL WORKHORSE FOR EXPANDING NATURE'S BIOSYNTHETIC CAPACITY

机译:YARROWIA LIPOLYTICA:扩展自然生物合成能力的多功能微生物

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Yarrowia lipolytica is an oleaginous yeast that have been substantially engineered for production of oleochemcials and drop-in transportation fuels. It has been considered as a 'generally recognized as safe' (GRAS) organism for the production of organic acids in the food and nutraceutical industry. The high precursor acetyl-CoA and malonyl-CoA flux along with the versatile carbon-utilization capability makes this yeast as a superior host to upgrade low-value carbons into high-value Pharmaceuticals and plant natural products (PNPs). Bacteria system in general is less efficient to express the complex gene cluster of plant natural product pathway. Unlike bacteria, yeast has developed spatially separated organelles to partition specialized metabolic functions into distinct cellular compartments. In this talk, we will present strategies to harness the endogenous acetyl-CoA/malonyl-CoA/HMG-CoA metabolism toward engineering efficient yeast cell factories to produce complex oleochemicals, terpenes, polyketides and aromatic commodity chemicals. We identified pathway limitations and assessed genetic engineering strategies to elevate the level of acetyl-CoA, malonyl-CoA, HMG-CoA and NADPH. This work will provide a testbed for engineering Y. lipolytica and expanding nature's biosynthetic capacity to produce complex fuels and chemicals from renewable feedstocks.
机译:解脂耶氏酵母(Yarrowia lipolytica)是一种油质酵母,已经过大量工程改造,可用于生产油脂化学和直接运输的燃料。在食品和营养保健行业中,它被认为是生产有机酸的“一般公认的安全”(GRAS)生物。高前体乙酰辅酶A和丙二酰辅酶A助熔剂的通量以及广泛的碳利用能力使该酵母成为将低价值碳升级为高价值药物和植物天然产物(PNP)的优良宿主。细菌系统通常在表达植物天然产物途径的复杂基因簇方面效率较低。与细菌不同,酵母菌在空间上分开了细胞器,将专门的代谢功能分配到不同的细胞区室中。在本次演讲中,我们将提出利用内源性乙酰辅酶A /丙二酰辅酶A / HMG-辅酶A代谢的策略,以工程化高效的酵母细胞工厂来生产复杂的油脂化学品,萜烯,聚酮化合物和芳香族商品化学品。我们确定了途径限制并评估了基因工程策略以提高乙酰辅酶A,丙二酰辅酶A,HMG-辅酶A和NADPH的水平。这项工作将为工程解脂耶氏酵母和扩大自然界的生物合成能力提供一个试验台,以利用可再生原料生产复杂的燃料和化学品。

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