Xavier K B, Martins L O, Peist R, Kossmann M, Boos W, Santos H
Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Oeiras, Portugal.
J Bacteriol. 1996 Aug;178(16):4773-7. doi: 10.1128/jb.178.16.4773-4777.1996.
The hyperthermophilic marine archaeon Thermococcus litoralis exhibits high-affinity transport activity for maltose and trehalose at 85 degrees C. The K(m) for maltose transport was 22 nM, and that for trehalose was 17 nM. In cells that had been grown on peptone plus yeast extract, the Vmax for maltose uptake ranged from 3.2 to 7.5 nmol/min/mg of protein in different cell cultures. Cells grown in peptone without yeast extract did not show significant maltose or trehalose uptake. We found that the compound in yeast extract responsible for the induction of the maltose and trehalose transport system was trehalose. [14C]maltose uptake at 100 nM was not significantly inhibited by glucose, sucrose, or maltotriose at a 100 microM concentration but was completely inhibited by trehalose and maltose. The inhibitor constant, Ki, of trehalose for inhibiting maltose uptake was 21 nM. In contrast, the ability of maltose to inhibit the uptake of trehalose was not equally strong. With 20 nM [14C]trehalose as the substrate, a 10-fold excess of maltose was necessary to inhibit uptake to 50%. However, full inhibition was observed at 2 microM maltose. The detergent-solubilized membranes of trehalose-induced cells contained a high-affinity binding protein for maltose and trehalose, with an M(r) of 48,000, that exhibited the same substrate specificity as the transport system found in whole cells. We conclude that maltose and trehalose are transported by the same high-affinity membrane-associated system. This represents the first report on sugar transport in any hyperthermophilic archaeon.
嗜热海洋古菌嗜热栖热袍菌在85℃时对麦芽糖和海藻糖表现出高亲和力转运活性。麦芽糖转运的K(m)为22 nM,海藻糖的K(m)为17 nM。在蛋白胨加酵母提取物培养基上生长的细胞中,不同细胞培养物中麦芽糖摄取的Vmax范围为3.2至7.5 nmol/分钟/毫克蛋白质。在不含酵母提取物的蛋白胨培养基中生长的细胞未显示出明显的麦芽糖或海藻糖摄取。我们发现酵母提取物中负责诱导麦芽糖和海藻糖转运系统的化合物是海藻糖。100 nM的[14C]麦芽糖摄取在100 microM浓度下不受葡萄糖、蔗糖或麦芽三糖的显著抑制,但被海藻糖和麦芽糖完全抑制。海藻糖抑制麦芽糖摄取的抑制常数Ki为21 nM。相比之下,麦芽糖抑制海藻糖摄取的能力并不同样强。以20 nM [14C]海藻糖为底物时,需要10倍过量的麦芽糖才能将摄取抑制至50%。然而,在2 microM麦芽糖时观察到完全抑制。海藻糖诱导细胞的去污剂溶解膜含有一种对麦芽糖和海藻糖具有高亲和力的结合蛋白,其分子量为48,000,表现出与全细胞中发现的转运系统相同的底物特异性。我们得出结论,麦芽糖和海藻糖通过相同的高亲和力膜相关系统转运。这是关于任何嗜热古菌中糖转运的首次报道。