Leskelä S, Wahlström E, Kontinen V P, Sarvas M
Laboratory of Vaccine Development, National Public Health Institute, Helsinki, Finland.
Mol Microbiol. 1999 Feb;31(4):1075-85. doi: 10.1046/j.1365-2958.1999.01247.x.
We have identified and characterized the Igt gene of Bacillus subtilis. The prelipoprotein diacylglycerol transferase enzyme (Lgt) catalyses the first reaction in lipomodification of bacterial lipoproteins. Inactivation of Igt in B. subtilis by a nonsense mutation (prs-11 mutation) or by disruption was shown here to abolish lipomodification of prelipoproteins completely, as well as the cleavage of signal peptide. However, unlike in Gram-negative bacteria, the Igt mutants of B. subtilis were fully viable. In agreement with this observation, studies of two lipoproteins, PrsA and BlaP, indicated that non-lipomodified precursors of these proteins were functional and translocated across the cytoplasmic membrane. However, there was release of both precursors from cells, resulting in a reduced level of the cell-bound form. We have shown that the reduced level of the PrsA lipoprotein, a foldase involved in protein secretion, caused impaired protein secretion, a prominent phenotype of Igt mutants. There was no indication that non-lipomodified PrsA displayed reduced activity.
我们已经鉴定并表征了枯草芽孢杆菌的Igt基因。前脂蛋白二酰甘油转移酶(Lgt)催化细菌脂蛋白脂质修饰的第一步反应。本文显示,通过无义突变(prs-11突变)或破坏作用使枯草芽孢杆菌中的Igt失活,会完全消除前脂蛋白的脂质修饰以及信号肽的切割。然而,与革兰氏阴性菌不同,枯草芽孢杆菌的Igt突变体完全可以存活。与此观察结果一致,对两种脂蛋白PrsA和BlaP的研究表明,这些蛋白质的未脂质修饰前体具有功能,并能穿过细胞质膜转运。然而,两种前体都从细胞中释放出来,导致细胞结合形式的水平降低。我们已经表明,参与蛋白质分泌的折叠酶PrsA脂蛋白水平降低会导致蛋白质分泌受损,这是Igt突变体的一个显著表型。没有迹象表明未脂质修饰的PrsA活性降低。