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曲霉中衣康酸的生物技术生产及其生物合成

Biotechnological production of itaconic acid and its biosynthesis in Aspergillus terreus.

作者信息

Okabe Mitsuyasu, Lies Dwiarti, Kanamasa Shin, Park Enoch Y

机构信息

Musashino Chemical Laboratory, Ltd., Yaesu Daibiru Bldg., 1-1-1 Kyobashi, Chuo-ku, Tokyo, 104-0031, Japan.

出版信息

Appl Microbiol Biotechnol. 2009 Sep;84(4):597-606. doi: 10.1007/s00253-009-2132-3. Epub 2009 Jul 21.

Abstract

More than 80,000 tons of itaconic acid (IA) is produced worldwide each year and is sold at a price of around US$ 2/kg. The IA production yield from sugar is higher than 80 g/l. The widespread use of IA in synthetic resins, synthetic fibers, plastics, rubbers, surfactants, and oil additives has resulted in an increased demand for this product. However, at present, the IA production capacity exceeds the demand because this product has a restricted range of applications. Studies have been actively conducted in different biomedical fields--dental, ophthalmic, and drug delivery--to extend the range of applications of IA. Recently, many researchers have attempted to replace the carbon source used for microbial production of IA with cheaper alternative substrates. However, there is still a need for new biotechnology innovations that would help to reduce the production costs, such as innovative process development and strain improvement to allow the use of a low-quality carbon source. In this short review, we discuss the following aspects of IA production: strain improvement, process development, identification of the key enzyme cis-aconitic acid decarboxylase (CAD) in the IA metabolic pathway, metabolic importance of CAD, and new applications of IA.

摘要

每年全球衣康酸(IA)产量超过8万吨,售价约为2美元/千克。以糖为原料生产IA的产量高于80克/升。IA在合成树脂、合成纤维、塑料、橡胶、表面活性剂和油添加剂中的广泛应用导致对该产品的需求增加。然而,目前IA的生产能力超过了需求,因为该产品的应用范围有限。为了扩大IA的应用范围,不同的生物医学领域——牙科、眼科和药物递送——都在积极开展研究。最近,许多研究人员试图用更便宜的替代底物取代用于微生物生产IA的碳源。然而,仍然需要新的生物技术创新来帮助降低生产成本,例如创新工艺开发和菌株改良,以允许使用低质量的碳源。在这篇简短的综述中,我们讨论了IA生产的以下几个方面:菌株改良、工艺开发、IA代谢途径中关键酶顺乌头酸脱羧酶(CAD)的鉴定、CAD的代谢重要性以及IA的新应用。

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