Liss L R, Oliver D B
J Biol Chem. 1986 Feb 15;261(5):2299-303.
We have followed the synthesis and secretion of a number of periplasmic and outer membrane proteins in three strains of Escherichia coli, a secA amber mutant, a secA temperature-sensitive mutant, and a strain that blocks protein secretion due to a high level of expression of an export-defective hybrid protein between maltose-binding protein and beta-galactosidase (MalE-LacZ). Our results show that after several hours under nonpermissive conditions the specificity and extent of the export blocks in the secA temperature-sensitive mutant and the strain producing the MalE-LacZ hybrid protein are identical, affecting at least four major outer membrane proteins and most but not all periplasmic proteins. The secA gene product, therefore, appears to be an essential component of the major export pathway in E. coli which is used by many envelope proteins independent of whether they are cotranslationally or post-translationally secreted. In contrast, the synthesis of only a subset of these envelope proteins is reduced in the secA amber mutant after shift to the nonpermissive condition. These results indicate that the SecA protein serves roles both in the synthesis and the secretion of certain cell envelope proteins.
我们追踪了三种大肠杆菌菌株中一些周质蛋白和外膜蛋白的合成与分泌情况,这三种菌株分别是:一个secA琥珀突变体、一个secA温度敏感突变体,以及一个因麦芽糖结合蛋白和β-半乳糖苷酶之间的输出缺陷型杂合蛋白(MalE-LacZ)高表达而阻断蛋白质分泌的菌株。我们的结果表明,在非允许条件下培养数小时后,secA温度敏感突变体和产生MalE-LacZ杂合蛋白的菌株中输出阻断的特异性和程度是相同的,影响至少四种主要外膜蛋白以及大部分但并非所有周质蛋白。因此,secA基因产物似乎是大肠杆菌主要输出途径的一个必需组分,许多包膜蛋白都利用该途径,无论它们是共翻译分泌还是翻译后分泌。相比之下,在转换到非允许条件后,secA琥珀突变体中只有一部分包膜蛋白的合成减少。这些结果表明,SecA蛋白在某些细胞包膜蛋白的合成和分泌中都发挥作用。