Van Kessel J S, Russell J B
Department of Animal Science, Cornell University, Ithaca, New York.
Appl Environ Microbiol. 1992 Mar;58(3):969-75. doi: 10.1128/aem.58.3.969-975.1992.
Strain SR, a monensin-sensitive, ammonia-producing ruminal bacterium, grew rapidly on arginine and lysine, but only if sodium was present. Arginine transport could be driven by either an electrical potential or a chemical gradient of sodium. Arginine was converted to ornithine, and it appeared that ornithine efflux created a sodium gradient which in turn drove arginine transport. There was a linear decline in arginine transport as pH was decreased from 7.5 to 5.5, and the cells did not grow at a pH less than 6.0. The Eadie-Hofstee plot was biphasic, and arginine could also be taken by a high-capacity diffusion mechanism. Because arginine was a strong inhibitor of lysine transport and lysine was a weak inhibitor of arginine transport, it appeared that both lysine and arginine were taken up by an arginine-lysine carrier which had a preference for arginine. The rate of lysine fermentation was always proportional to the extracellular lysine concentration, and facilitated diffusion was the dominant mechanism of lysine transport. When SR was grown in continuous culture on arginine or lysine, the theoretical maximal growth yield was similar (13 g of cells per mol of ATP), but the apparent maintenance energy requirement for arginine was greater than lysine (9.4 versus 4.4 mmol of ATP per g of cells per h). On the basis of differences in yield and maintenance energy, it appeared that active arginine transport accounted for approximately 40% of the total ATP.
菌株SR是一种对莫能菌素敏感、能产生氨的瘤胃细菌,在精氨酸和赖氨酸上生长迅速,但前提是有钠存在。精氨酸转运可以由钠的电势或化学梯度驱动。精氨酸被转化为鸟氨酸,似乎鸟氨酸外流产生了钠梯度,进而驱动精氨酸转运。当pH从7.5降至5.5时,精氨酸转运呈线性下降,细胞在pH低于6.0时不生长。伊迪-霍夫斯泰曲线呈双相,精氨酸也可通过高容量扩散机制摄取。由于精氨酸是赖氨酸转运的强抑制剂,而赖氨酸是精氨酸转运的弱抑制剂,似乎赖氨酸和精氨酸都是通过对精氨酸有偏好的精氨酸-赖氨酸载体摄取的。赖氨酸发酵速率始终与细胞外赖氨酸浓度成正比,易化扩散是赖氨酸转运的主要机制。当菌株SR在精氨酸或赖氨酸上进行连续培养时,理论最大生长产量相似(每摩尔ATP产生13克细胞),但精氨酸的表观维持能量需求大于赖氨酸(每克细胞每小时分别为9.4和4.4毫摩尔ATP)。基于产量和维持能量的差异,似乎精氨酸的主动转运约占总ATP的40%。