Eggeling Lothar
Department of Biotechnology, Institute of Bio- and Geosciences, Forschungszentrum Jülich, D-52425, Jülich, Germany.
Adv Biochem Eng Biotechnol. 2017;159:199-225. doi: 10.1007/10_2016_32.
Microbes are talented catalysts to synthesize valuable small molecules in their cytosol. However, to make full use of their skills - and that of metabolic engineers - the export of intracellularly synthesized molecules to the culture medium has to be considered. This step is as essential as is each step for the synthesis of the favorite molecule of the metabolic engineer, but is frequently not taken into account. To export small molecules via the microbial cell envelope, a range of different types of carrier proteins is recognized to be involved, which are primary active carriers, secondary active carriers, or proteins increasing diffusion. Relevant export may require just one carrier as is the case with L-lysine export by Corynebacterium glutamicum or involve up to four carriers as known for L-cysteine excretion by Escherichia coli. Meanwhile carriers for a number of small molecules of biotechnological interest are recognized, like for production of peptides, nucleosides, diamines, organic acids, or biofuels. In addition to carriers involved in amino acid excretion, such carriers and their impact on product formation are described, as well as the relatedness of export carriers which may serve as a hint to identify further carriers required to improve product formation by engineering export.
微生物是在其胞质溶胶中合成有价值小分子的出色催化剂。然而,为了充分利用它们的技能以及代谢工程师的技能,必须考虑将细胞内合成的分子输出到培养基中。这一步骤与代谢工程师合成其喜爱分子的每一步骤一样重要,但却常常被忽视。为了通过微生物细胞膜输出小分子,人们认识到一系列不同类型的载体蛋白参与其中,它们是初级主动载体、次级主动载体或促进扩散的蛋白。相关的输出可能只需要一种载体,如谷氨酸棒杆菌输出L-赖氨酸的情况,或者像大肠杆菌排泄L-半胱氨酸那样涉及多达四种载体。与此同时,人们认识到了许多具有生物技术意义的小分子的载体,例如用于肽、核苷、二胺、有机酸或生物燃料生产的载体。除了参与氨基酸排泄的载体外,还描述了此类载体及其对产物形成的影响,以及输出载体之间的相关性,这可能有助于通过工程化输出鉴定进一步提高产物形成所需的载体。