Sakai Y, Toda K, Mitani Y, Tsuda M, Tsuchiya T
Biochem Biophys Res Commun. 1987 Apr 14;144(1):382-6. doi: 10.1016/s0006-291x(87)80521-1.
Vibrio parahaemolyticus could grow with AMP, ADP or ATP as the sole source of carbon. In the presence of Cl-, a membrane-bound Cl(-)-dependent 5'-nucleotidase seemed to hydrolyze the nucleotides extracellularly, and then the cells took up the resulting adenosine. In the absence of Cl-, although no significant dephosphorylation of the nucleotides occurred, the cells could still grow with AMP, but not with ADP or ATP. Moreover, in the presence of Cl-, Zn2+ inhibited the 5'-nucleotidase, and inhibited growth of the cells with ADP or ATP, but not with AMP, as the carbon source. V. parahaemolyticus was unable to grow with adenine or ribose 5-phosphate. These results suggested that the cells might have an AMP transport system. In fact, Na+ uptake was observed on addition of AMP to a cell suspension in the absence of Cl-, indicating Na+-AMP cotransport.
副溶血性弧菌能够以AMP、ADP或ATP作为唯一碳源生长。在有Cl-存在的情况下,一种膜结合的Cl(-)依赖性5'-核苷酸酶似乎在细胞外水解核苷酸,然后细胞摄取产生的腺苷。在没有Cl-的情况下,尽管核苷酸没有明显的去磷酸化,但细胞仍能以AMP生长,但不能以ADP或ATP生长。此外,在有Cl-存在的情况下,Zn2+抑制5'-核苷酸酶,并抑制以ADP或ATP作为碳源的细胞生长,但不抑制以AMP作为碳源的细胞生长。副溶血性弧菌不能以腺嘌呤或5-磷酸核糖生长。这些结果表明,细胞可能具有一种AMP转运系统。事实上,在没有Cl-的情况下,向细胞悬液中添加AMP时观察到Na+摄取,表明存在Na+-AMP共转运。