Smith W P, Landau J V, Pope D H
J Bacteriol. 1976 May;126(2):654-60. doi: 10.1128/jb.126.2.654-660.1976.
The degree of barotolerance exhibited by Pseudomonas fluorescens and Pseudomonas bathycetes in vitro polyphenylalanine-synthesizing systems can be modified by altering the concentrations of specific ions in the reaction mixture. Hybrid-protein-synthesizing systems, utilizing all the possible S-100 supernatant fluid and ribosome combinations from Escherichia coli, P. fluorescens, and P. bathycetes, were tested for barotolerance under conditions of low (16 mM Mg2+ plus 0 mM Na+) and high (150 mM Na+ plus 60 mM Mg2+) ion concentrations. The results reveal that barotolerant synthesis is a characteristic determined by the origin of the ribosome. Systems utilizing E. coli ribosomes are barosensitive at both low and high ion concentrations, P. fluorescens ribosomes barotolerant under both conditions, and P. bathycetes ribosomes barosensitive at low and barotolerant at high ion concentrations. Therefore, certain concentrations of specific ions will increase barotolerance, but only if the ribosomes are capable of functioning at high pressures.
荧光假单胞菌和深海假单胞菌在体外聚苯丙氨酸合成系统中表现出的耐压程度可通过改变反应混合物中特定离子的浓度来改变。利用来自大肠杆菌、荧光假单胞菌和深海假单胞菌的所有可能的S-100上清液和核糖体组合构建的杂交蛋白合成系统,在低离子浓度(16 mM Mg2+加0 mM Na+)和高离子浓度(150 mM Na+加60 mM Mg2+)条件下测试其耐压性。结果表明,耐压合成是由核糖体来源决定的特性。利用大肠杆菌核糖体的系统在低离子浓度和高离子浓度下均对压力敏感,荧光假单胞菌核糖体在两种条件下均具有耐压性,而深海假单胞菌核糖体在低离子浓度下对压力敏感,在高离子浓度下具有耐压性。因此,特定离子的某些浓度会增加耐压性,但前提是核糖体能够在高压下发挥作用。