Deppenmeier U, Hoffmeister M, Prust C
Institut für Mikrobiologie und Genetik, Georg-August-Universität, Grisebachstrasse 8, 37077 Göttingen, Germany.
Appl Microbiol Biotechnol. 2002 Nov;60(3):233-42. doi: 10.1007/s00253-002-1114-5. Epub 2002 Oct 12.
The genus Gluconobacter belongs to the group of acetic acid bacteria, which are characterized by their ability to incompletely oxidize a wide range of carbohydrates and alcohols. The corresponding products (aldehydes, ketones and organic acids) are excreted almost completely into the medium. In most cases, the reactions are catalyzed by dehydrogenases connected to the respiratory chain. Since the reactive centers of the enzymes are oriented towards the periplasmic space, transport of substrates and products into, and out of, the cell is not necessary. Thus, rapid accumulation of incompletely oxidized products in the medium is facilitated. These organisms are able to grow in highly concentrated sugar solutions and at low pH-values. High oxidation rates correlate with low biomass production, which makes Gluconobacter strains interesting organisms for industrial applications. Modern fermentation processes, such as the production of L-sorbose (vitamin C synthesis) and 6-amino- L-sorbose (synthesis of the antidiabetic drug miglitol) are carried out with members of this genus. Other important products are dihydroxyacetone, gluconate and ketogluconates. The bacteria belonging to the genus Gluconobacter exhibit extraordinary uniqueness not only in their biochemistry but also in their growth behavior and response to extreme culture conditions. This uniqueness makes them ideal organisms for microbial process development.
葡糖杆菌属属于醋酸菌菌群,其特点是能够不完全氧化多种碳水化合物和醇类。相应的产物(醛、酮和有机酸)几乎完全分泌到培养基中。在大多数情况下,反应由与呼吸链相连的脱氢酶催化。由于酶的活性中心朝向周质空间,底物和产物进出细胞无需运输。因此,促进了不完全氧化产物在培养基中的快速积累。这些微生物能够在高浓度糖溶液和低pH值条件下生长。高氧化速率与低生物量产生相关,这使得葡糖杆菌菌株成为工业应用中有趣的微生物。现代发酵过程,如L-山梨糖(维生素C合成)和6-氨基-L-山梨糖(抗糖尿病药物米格列醇的合成)的生产,都是用该属的成员进行的。其他重要产物是二羟基丙酮、葡萄糖酸盐和酮葡萄糖酸盐。葡糖杆菌属的细菌不仅在生物化学方面,而且在生长行为和对极端培养条件的反应方面都表现出非凡的独特性。这种独特性使其成为微生物工艺开发的理想微生物。