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Stimulation of zero-trans rates of lactose and maltose uptake into yeasts by preincubation with hexose to increase the adenylate energy charge

机译:通过与己糖预孵育以增加腺苷酸能电荷,刺激酵母中乳糖和麦芽糖的零反式吸收速率

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摘要

Initial rates of sugar uptake (zero-trans rates) are often measured by incubating yeast cells with radiolabeled sugars for 5 to 30 s and determining the radioactivity entering the cells. The yeast cells used are usually harvested from growth medium, washed, suspended in nutrient-free buffer, and stored on ice before they are assayed. With this method, the specific rates of zero-trans lactose uptake by Kluyveromyces lactis or recombinant Saccharomyces cerevisiae strains harvested from lactose fermentations were three- to eightfold lower than the specific rates of lactose consumption during fermentation. No significant extracellular β-galactosidase activity was detected. The ATP content and adenylate energy charge (EC) of the yeasts were relatively low before the [14C]lactose uptake reactions were started. A short (1- to 7-min) preincubation of the yeasts with 10 to 30 mM glucose caused 1.5- to 5-fold increases in the specific rates of lactose uptake. These increases correlated with increases in EC (from 0.6 to 0.9) and ATP (from 4 to 8 µmol·g dry yeast–1). Stimulation by glucose affected the transport Vmax values, with smaller increases in Km values. Similar observations were made for maltose transport, using a brewer's yeast. These findings suggest that the electrochemical proton potential that drives transport through sugar/H+ symports is significantly lower in the starved yeast suspensions used for zero-trans assays than in actively metabolizing cells. Zero-trans assays with such starved yeast preparations can produce results that seriously underestimate the capacity of sugar/H+ symports. A short exposure to glucose allows a closer approach to the sugar/H+ symport capacity of actively metabolizing cells.
机译:通常通过将酵母细胞与放射性标记的糖孵育5至30 s并确定进入细胞的放射性来测量糖的初始摄取率(零反式率)。所用的酵母细胞通常从生长培养基中收获,洗涤,悬浮在无营养的缓冲液中,并在测定前保存在冰上。用这种方法,从乳酸发酵中收获的乳酸克鲁维酵母或重组酿酒酵母菌株的零反式乳糖摄取的特定速率比发酵期间乳糖消耗的特定速率低三到八倍。没有检测到明显的细胞外β-半乳糖苷酶活性。在开始[14C]乳糖摄取反应之前,酵母的ATP含量和腺苷酸电荷(EC)相对较低。将酵母与10至30 mM葡萄糖进行短暂的预温育(1至7分钟)会导致乳糖摄取的特定速率增加1.5至5倍。这些增加与EC(从0.6到0.9)和ATP(从4到8 µmol·g干酵母–1)的增加相关。葡萄糖刺激影响转运Vmax值,而Km值增加较小。使用啤酒酵母对麦芽糖运输进行了类似的观察。这些发现表明,用于零转运测定的饥饿的酵母悬浮液中的驱动质子通过糖/ H +对称转运的电化学质子势能显着低于活跃代谢的细胞。用这种饥饿的酵母制品进行零反式测定可能会产生严重低估糖/ H +交换能力的结果。短时间接触葡萄糖可以更接近主动代谢细胞的糖/ H +转运能力。

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