McMichael J C, Ou J T
J Bacteriol. 1977 Oct;132(1):314-20. doi: 10.1128/jb.132.1.314-320.1977.
One heat-modifiable protein of Escherichia coli outer membrane does not completely change to the high-temperature form in the presence of magnesium ion in sodium dodecyl sulfate solution. When the metal ion complexing reagents ethylenediaminetetraacetic acid, phosphate ion, hydroxyl ion, or the competitive cations Zn2+ or Ca2+ are added to the sodium dodecyl sulfate-solubilized sample of outer membrane, and then the sample is heated to 100 degrees C and recooled to room temperature, the protein is almost completely converted to the high-temperature form. In control samples, or if sodium chloride, magnesium chloride, or manganous chloride are added to these samples and treated the same way, a large amount of the low-temperature form of the protein is preserved. beta-Mercaptoethanol additions gave the same results as the metal ion complexing reagents and may owe its activity in these solutions to metal-binding activity and not to its role as a reducing reagent. We concluded that magnesium ion may be involved with stabilization of the low-temperature form of the protein either by directly binding the magnesium or by mediating interaction with other components of the membrane.
大肠杆菌外膜中的一种热可修饰蛋白在十二烷基硫酸钠溶液中存在镁离子的情况下不会完全转变为高温形式。当将金属离子络合试剂乙二胺四乙酸、磷酸根离子、氢氧根离子或竞争性阳离子Zn2+或Ca2+添加到十二烷基硫酸钠增溶的外膜样品中,然后将样品加热到100℃并再冷却至室温时,该蛋白几乎完全转变为高温形式。在对照样品中,或者如果向这些样品中添加氯化钠、氯化镁或氯化锰并以相同方式处理,则会保留大量该蛋白的低温形式。添加β-巯基乙醇得到的结果与金属离子络合试剂相同,其在这些溶液中的活性可能归因于金属结合活性,而非其作为还原剂的作用。我们得出结论,镁离子可能通过直接结合镁或通过介导与膜的其他成分的相互作用来参与该蛋白低温形式的稳定化。