van Dam Vincent, Sijbrandi Robert, Kol Matthijs, Swiezewska Ewa, de Kruijff Ben, Breukink Eefjan
Department Biochemistry of Membranes, Bijvoet Centre, Utrecht University, 3584 CH, Utrecht, The Netherlands.
Mol Microbiol. 2007 May;64(4):1105-14. doi: 10.1111/j.1365-2958.2007.05722.x.
Translocation of the peptidoglycan precursor Lipid II across the cytoplasmic membrane is a key step in bacterial cell wall synthesis, but hardly understood. Using NBD-labelled Lipid II, we showed by fluorescence and TLC assays that Lipid II transport does not occur spontaneously and is not induced by the presence of single spanning helical transmembrane peptides that facilitate transbilayer movement of membrane phospholipids. MurG catalysed synthesis of Lipid II from Lipid I in lipid vesicles also did not result in membrane translocation of Lipid II. These findings demonstrate that a specialized protein machinery is needed for transmembrane movement of Lipid II. In line with this, we could demonstrate Lipid II translocation in isolated Escherichia coli inner membrane vesicles and this transport could be uncoupled from the synthesis of Lipid II at low temperatures. The transport process appeared to be independent from an energy source (ATP or proton motive force). Additionally, our studies indicate that translocation of Lipid II is coupled to transglycosylation activity on the periplasmic side of the inner membrane.
肽聚糖前体脂质II跨细胞质膜的转运是细菌细胞壁合成中的关键步骤,但人们对此了解甚少。使用NBD标记的脂质II,我们通过荧光和TLC分析表明,脂质II的转运不会自发发生,也不会由促进膜磷脂跨双层移动的单跨螺旋跨膜肽的存在所诱导。MurG催化脂质小泡中脂质I合成脂质II,也不会导致脂质II的膜转运。这些发现表明,脂质II的跨膜移动需要一种特殊的蛋白质机制。与此一致的是,我们可以在分离的大肠杆菌内膜小泡中证明脂质II的转运,并且这种转运在低温下可以与脂质II的合成解偶联。转运过程似乎独立于能量来源(ATP或质子动力)。此外,我们的研究表明,脂质II的转运与内膜周质侧的转糖基化活性相关。