Research Institute of Innovative Technology for the Earth, 9-2 Kizugawadai, Kizugawa, Kyoto, Japan.
Appl Microbiol Biotechnol. 2010 Jan;85(3):471-80. doi: 10.1007/s00253-009-2292-1.
There is increasing interest in production of transportation fuels and commodity chemicals from lignocellulosic biomass, most desirably through biological fermentation. Considerable effort has been expended to develop efficient biocatalysts that convert sugars derived from lignocellulose directly to value-added products. Glucose, the building block of cellulose, is the most suitable fermentation substrate for industrial microorganisms such as Escherichia coli, Corynebacterium glutamicum, and Saccharomyces cerevisiae. Other sugars including xylose, arabinose, mannose, and galactose that comprise hemicellulose are generally less efficient substrates in terms of productivity and yield. Although metabolic engineering including introduction of functional pentose-metabolizing pathways into pentose-incompetent microorganisms has provided steady progress in pentose utilization, further improvements in sugar mixture utilization by microorganisms is necessary. Among a variety of issues on utilization of sugar mixtures by the microorganisms, recent studies have started to reveal the importance of sugar transporters in microbial fermentation performance. In this article, we review current knowledge on diversity and functions of sugar transporters, especially those associated with pentose uptake in microorganisms. Subsequently, we review and discuss recent studies on engineering of sugar transport as a driving force for efficient bioconversion of sugar mixtures derived from lignocellulose.
人们对于利用木质纤维素生物质生产运输燃料和大宗商品化学品越来越感兴趣,最理想的方法是通过生物发酵。人们已经付出了相当大的努力来开发高效的生物催化剂,将木质纤维素衍生的糖直接转化为高附加值的产品。葡萄糖是纤维素的组成部分,是大肠杆菌、谷氨酸棒杆菌和酿酒酵母等工业微生物最适合的发酵底物。其他糖,包括构成半纤维素的木糖、阿拉伯糖、甘露糖和半乳糖,在生产力和产率方面通常是效率较低的底物。尽管包括向戊糖无能微生物中引入功能性戊糖代谢途径在内的代谢工程已经为戊糖利用提供了稳步进展,但仍有必要进一步提高微生物对糖混合物的利用效率。在微生物利用糖混合物的各种问题中,最近的研究开始揭示糖转运蛋白在微生物发酵性能中的重要性。本文综述了糖转运蛋白的多样性和功能的最新知识,特别是与微生物中戊糖摄取相关的知识。随后,我们综述和讨论了最近关于糖转运工程作为推动木质纤维素衍生糖混合物高效生物转化的驱动力的研究。