Gao Qiang, Zhang Min, McMillan James D, Kompala Dhinakar S
Department of Chemical Engineering, University of Colorado, Boulder 80309-0424, USA.
Appl Biochem Biotechnol. 2002 Spring;98-100:341-55. doi: 10.1385/abab:98-100:1-9:341.
Zymomonas mobilis has been metabolically engineered to broaden its substrate utilization range to include D-xylose and L-arabinose. Both genomically integrated and plasmid-bearing Z. mobilis strains that are capable of fermenting the pentose D-xylose have been created by incorporating four genes: two genes encoding xylose utilization metabolic enzymes (xylA/xylB) and two genes encoding pentose phosphate pathway enzymes (talB/tktA). We have characterized the activities of the four newly introduced enzymes for xylose metabolism, along with those of three native glycolytic enzymes, in two different xylose-fermenting Z. mobilis strains. These strains were grown on glucose-xylose mixtures in computer-controlled fermentors. Samples were collected and analyzed to determine extracellular metabolite concentrations as well as the activities of several intracellular enzymes in the xylose and glucose uptake and catabolism pathways. These measurements provide new insights on the possible bottlenecks in the engineered metabolic pathways and suggest methods for further improving the efficiency of xylose fermentation.
运动发酵单胞菌已通过代谢工程改造,扩大其底物利用范围,使其能够利用D-木糖和L-阿拉伯糖。通过整合四个基因,构建了基因组整合型和携带质粒的运动发酵单胞菌菌株,这些菌株能够发酵戊糖D-木糖:两个编码木糖利用代谢酶的基因(xylA/xylB)和两个编码磷酸戊糖途径酶的基因(talB/tktA)。我们在两种不同的能发酵木糖的运动发酵单胞菌菌株中,对四种新引入的木糖代谢酶以及三种天然糖酵解酶的活性进行了表征。这些菌株在计算机控制的发酵罐中以葡萄糖-木糖混合物为培养基进行培养。收集样本并进行分析,以确定细胞外代谢物浓度以及木糖和葡萄糖摄取及分解代谢途径中几种细胞内酶的活性。这些测量结果为工程代谢途径中可能存在的瓶颈提供了新的见解,并提出了进一步提高木糖发酵效率的方法。