Wada Rieko, Matsuyama Shin-ichi, Tokuda Hajime
Institute of Molecular and Cellular Biosciences, University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-0032, Japan.
Biochem Biophys Res Commun. 2004 Oct 22;323(3):1069-74. doi: 10.1016/j.bbrc.2004.08.200.
LolB, catalyzing the last step of lipoprotein transfer from the inner to the outer membrane of Escherichia coli, is itself a lipoprotein anchored to the outer membrane. Five Trp residues of LolB are conserved among LolB homologs in Gram-negative bacteria. These Trp residues were mutagenized to obtain defective LolB mutants. Mutation of Trp at position 52 to Pro impaired the receptor activity and caused accumulation of the LolA-lipoprotein complex in the periplasm. Similar mutants were obtained for Trp at position 117. A mutant with Gly instead of Trp at position 148 retained the receptor activity but inhibited growth upon its overproduction. The outer membrane sorting of this mutant seemed to be defective, lipoprotein transfer thereby being perturbed when it was overproduced. Despite the strong conservation, no defective mutant for Trp at position 183 was obtained, and only weak mutants were isolated for Trp at position 18. Based on the crystal structure of LolB, the phenotypes of these mutants are discussed.
LolB催化脂蛋白从大肠杆菌内膜转运至外膜的最后一步反应,其本身是一种锚定在外膜上的脂蛋白。LolB的五个色氨酸残基在革兰氏阴性菌的LolB同源物中保守。对这些色氨酸残基进行诱变以获得有缺陷的LolB突变体。将第52位的色氨酸突变为脯氨酸会损害受体活性,并导致LolA-脂蛋白复合物在周质中积累。第117位色氨酸也获得了类似的突变体。第148位用甘氨酸取代色氨酸的突变体保留了受体活性,但过量表达时会抑制生长。该突变体的外膜分选似乎存在缺陷,过量表达时脂蛋白转运因此受到干扰。尽管具有高度保守性,但未获得第183位色氨酸的缺陷突变体,仅分离到第18位色氨酸的弱突变体。基于LolB的晶体结构,对这些突变体的表型进行了讨论。