Howard S P, Cavard D, Lazdunski C
Memorial University of Newfoundland, St John's, Canada.
J Gen Microbiol. 1991 Jan;137(1):81-9. doi: 10.1099/00221287-137-1-81.
The requirement for the activation of phospholipase A by the colicin A lysis protein (Cal) in the efficient release of colicin A by Escherichia coli cells containing colicin A plasmids was studied. In particular, we wished to determine if this activation is the primary effect of Cal or whether it reflects more generalized damage to the envelope caused by the presence of large quantities of this small acylated protein. E. coli tolQ cells, which were shown to be leaky for periplasmic proteins, were transduced to pldA and then transformed with the recombinant colicin A plasmid pKA. Both the pldA and pldA+ strains released large quantities of colicin A following induction, indicating that in these cells phospholipase A activation is not required for colicin release. This release was, however, still dependent on a functioning Cal protein. The assembly and processing of Cal in situ in the cell envelope was studied by combining pulse-chase labelling with isopycnic sucrose density gradient centrifugation of the cell membranes. Precursor Cal and lipid-modified precursor Cal were found in the inner membrane at early times of chase, and gave rise to mature Cal which accumulated in both the inner and outer membrane after further chase. The signal peptide was also visible on these gradients, and its distribution too was restricted to the inner membrane. Gradient centrifugation of envelopes of cells which were overproducing Cal resulted in very poor separation of the membranes. The results of these studies provide evidence that the colicin A lysis protein causes phospholipase A-independent alterations in the integrity of the E. coli envelope.(ABSTRACT TRUNCATED AT 250 WORDS)
研究了含有大肠杆菌素A质粒的大肠杆菌细胞高效释放大肠杆菌素A时,大肠杆菌素A裂解蛋白(Cal)对磷脂酶A激活的需求。特别地,我们希望确定这种激活是Cal的主要作用,还是反映了大量这种小的酰化蛋白的存在对细胞膜造成的更普遍的损伤。已证明对周质蛋白有渗漏的大肠杆菌tolQ细胞被转导至pldA,然后用重组大肠杆菌素A质粒pKA转化。诱导后,pldA和pldA+菌株都释放了大量大肠杆菌素A,这表明在这些细胞中,大肠杆菌素释放不需要磷脂酶A激活。然而,这种释放仍然依赖于功能性的Cal蛋白。通过将脉冲追踪标记与细胞膜的等密度蔗糖密度梯度离心相结合,研究了Cal在细胞膜原位的组装和加工。在追踪早期,在内膜中发现了前体Cal和脂质修饰的前体Cal,进一步追踪后产生了成熟的Cal,其在内膜和外膜中都有积累。信号肽在这些梯度上也可见,其分布也局限于内膜。对过量表达Cal的细胞的细胞膜进行梯度离心,导致膜的分离效果很差。这些研究结果提供了证据,表明大肠杆菌素A裂解蛋白会导致大肠杆菌细胞膜完整性发生不依赖磷脂酶A的改变。(摘要截短至250字)