Willsky G R, Malamy M H
J Bacteriol. 1976 Jul;127(1):595-609. doi: 10.1128/jb.127.1.595-609.1976.
Using sodium dodecyl sulfate-polyacrylamide gel electrophoresis and immunological techniques, we have compared the synthesis of the phoA protein (alkaline phosphatase) and the phoS protein (phosphate-binding protein) in response to the level of phosphate in the medium in different genetic backgrounds containing the known alkaline phosphatase control mutations. Both proteins are produced in excess phosphate media in a phoR1a- strain, whereas neither protein is produced in a phoB- strain even under derepression conditions. In four different phoR1c- strains, however, the phoA product cannot be detected in extracts of cells obtained from any growth condition, whereas the phoS product is produced in both excess and limiting phosphate media. It is not yet known if phoR1c- mutants are a special class of mutations within the phoB gene or whether they occur in a separate cistron involved in alkaline phosphatase regulation. From these results we conclude that the expression of the phoA gene is not always co-regulated with expression of the phoS gene product. We have determined that the phoS protein is a component of periplasmic protein band P4 described by Morris et al. (1974). The phoS product lacks sulfur-containing amino acids and is extractable by treatment with polymyxin sulfate. The other component of band P4 contains methionine and/or cysteine and is not extracted by polymyxin sulfate treatment. Like the phoS and phoA proteins, its synthesis is sensitive to the concentration of phosphate in the growth medium. In addition, the existence of a new class of periplasmic proteins synthesized at maximum rate in high phosphate media is demonstrated.
利用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和免疫学技术,我们比较了在含有已知碱性磷酸酶控制突变的不同遗传背景下,phoA蛋白(碱性磷酸酶)和phoS蛋白(磷酸盐结合蛋白)的合成情况,以响应培养基中磷酸盐的水平。在phoR1a-菌株中,这两种蛋白在过量磷酸盐培养基中均有产生,而在phoB-菌株中,即使在去阻遏条件下,这两种蛋白都不产生。然而,在四种不同的phoR1c-菌株中,从任何生长条件下获得的细胞提取物中都检测不到phoA产物,而phoS产物在过量和有限磷酸盐培养基中均有产生。目前尚不清楚phoR1c-突变体是phoB基因内的一类特殊突变,还是发生在参与碱性磷酸酶调节的一个独立顺反子中。从这些结果我们得出结论,phoA基因的表达并不总是与phoS基因产物的表达共同调控。我们已经确定phoS蛋白是Morris等人(1974年)描述的周质蛋白带P4的一个组成部分。phoS产物不含含硫氨基酸,可用硫酸多粘菌素处理提取。带P4的另一个组成部分含有甲硫氨酸和/或半胱氨酸,硫酸多粘菌素处理不能提取。与phoS和phoA蛋白一样,其合成对生长培养基中磷酸盐的浓度敏感。此外,还证明了存在一类在高磷酸盐培养基中以最大速率合成的新型周质蛋白。