Miyamoto A, Tokuda H
Institute of Molecular and Cellular Biosciences, University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo, 113-0032, Japan.
Biochem Biophys Res Commun. 2001 Oct 12;287(5):1125-8. doi: 10.1006/bbrc.2001.5705.
The outer membrane-specific lipoproteins of Escherichia coli are released from the inner membrane as a water-soluble complex with LolA and then transferred to the outer membrane receptor, LolB. LolA thus plays a critical role in the sorting and outer membrane localization of lipoproteins. To dissect the LolA function, the highly conserved residues were subjected to random mutagenesis, followed by selection for a growth defect. LolA(R43L), one of mutants thus constructed, possessed Leu in place of Arg at position 43 and caused accumulation of the LolA(R43L)-lipoprotein complex in the periplasm. LolA(R43L) was as active as wild-type LolA as to the release of lipoproteins from spheroplasts. In marked contrast, the transfer of lipoproteins from LolA(R43L) to LolB was completely inhibited, indicating that Arg at position 43 of LolA is involved in the lipoprotein transfer reaction.
大肠杆菌的外膜特异性脂蛋白以内膜与LolA形成的水溶性复合物形式从内膜释放,然后转移至外膜受体LolB。因此,LolA在脂蛋白的分选和外膜定位中发挥关键作用。为剖析LolA的功能,对高度保守的残基进行随机诱变,随后筛选生长缺陷型。如此构建的突变体之一LolA(R43L)在第43位氨基酸处由精氨酸替换为亮氨酸,导致LolA(R43L)-脂蛋白复合物在周质中积累。LolA(R43L)在从原生质球释放脂蛋白方面与野生型LolA活性相当。与之形成显著对比的是,脂蛋白从LolA(R43L)向LolB的转移被完全抑制,这表明LolA第43位的精氨酸参与脂蛋白转移反应。