MacDonald R E, Greene R V, Lanyi J K
Biochemistry. 1977 Jul 12;16(14):3227-35. doi: 10.1021/bi00633a029.
The accumulation of 20 commonly occurring L-amino acids by cell envelope vesicles of Halobacterium halobium, in response to light-induced membrane potential and an artificially created sodium gradient, has been studied. Nineteen of these amino acids are actively accumulated under either or both of these conditions. Glutamate is unique in that its uptake is driven only by a chemical gradient for sodium. Amino acid concentrations at half-maximal uptake rates (Km) and maximal transport rates (Vmax) have been determined for the uptake of all 19 amino acids. The transport systems have been partially characterized with respect to groups of amino acids transported by common carriers, cation effects, and relative response to the electrical and chemical components of the sodium gradient, the driving forces for uptake. The data presented clearly show that the carrier systems, which are responsible for uptake of individual amino acids, are as variable in their properties as those found in other organisms; i.e., some are highly specific for individual amino acids, some transport several amino acids competitively, some are activated by a chemical gradient of sodium only, and some function also in the complete absence of such a gradient. For all amino acids, Na+ and K+ are both required for maximal rate of uptake. The carriers for L-leucine and L-histidine are symmetrical in that these amino acids are transported in both directions across the vesicle membrane. It is suggested that coupling of substrate transport to metabolic energy via transient ionic gradients may be a general phenomenon in procaryotes.
研究了嗜盐菌细胞包膜囊泡对20种常见L-氨基酸的积累情况,该积累是对光诱导膜电位和人工建立的钠梯度的响应。在这两种条件中的一种或两种条件下,其中19种氨基酸会被主动积累。谷氨酸是独特的,因为其摄取仅由钠的化学梯度驱动。已测定了所有19种氨基酸在摄取速率达到最大值一半时的浓度(Km)和最大转运速率(Vmax)。已就由共同载体转运的氨基酸组、阳离子效应以及对钠梯度的电和化学成分(摄取的驱动力)的相对响应,对转运系统进行了部分表征。所呈现的数据清楚地表明,负责摄取单个氨基酸的载体系统,其性质与在其他生物体中发现的载体系统一样具有多样性;即,有些对单个氨基酸具有高度特异性,有些竞争性地转运几种氨基酸,有些仅由钠的化学梯度激活,有些在完全没有这种梯度的情况下也能发挥作用。对于所有氨基酸,最大摄取速率都需要Na+和K+。L-亮氨酸和L-组氨酸的载体是对称的,因为这些氨基酸可以在两个方向上跨囊泡膜转运。有人提出,通过瞬时离子梯度将底物转运与代谢能量偶联可能是原核生物中的一种普遍现象。