4.6 Article

Roles of the Protruding Loop of Factor B Essential for the Localization of Lipoproteins ( LolB) in the Anchoring of Bacterial Triacylated Proteins to the Outer Membrane

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 289, 期 15, 页码 10530-10539

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M113.539270

关键词

Crystal Structure; Escherichia coli; Lipoprotein; Membrane Proteins; Protein Export; Protein Sorting; Protein Structure; LolB; Bacterial Lipoprotein; Periplasm

资金

  1. Ministry of Education, Culture, Sports, Science, and Technology of Japan
  2. Grants-in-Aid for Scientific Research [22380049, 24570152] Funding Source: KAKEN

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Background: LolB accepts lipoproteins from LolA and anchors them to the inner leaflet of outer membranes. Results: Membrane targeting of lipoproteins is defective in several mutants with substitutions of Leu-68 of LolB. Conclusion: The protruding loop of LolB plays critical roles in the membrane anchoring activity. Significance: A possible mechanism for the last step of lipoprotein sorting is proposed. The Lol system comprising five Lol proteins, LolA through LolE, sorts Escherichia coli lipoproteins to outer membranes. The LolCDE complex, an ATP binding cassette transporter in inner membranes, releases outer membrane-specific lipoproteins in an ATP-dependent manner, causing formation of the LolA-lipoprotein complex in the periplasm. LolA transports lipoproteins through the periplasm to LolB on outer membranes. LolB is itself a lipoprotein anchored to outer membranes, although the membrane anchor is functionally dispensable. LolB then localizes lipoproteins to outer membranes through largely unknown mechanisms. The crystal structure of LolB is similar to that of LolA, and it possesses a hydrophobic cavity that accommodates acyl chains of lipoproteins. To elucidate the molecular function of LolB, a periplasmic version of LolB, mLolB, was mutagenized at various conserved residues. Despite the lack of acyl chains, most defective mutants were insoluble. However, a derivative with glutamate in place of leucine 68 was soluble and unable to localize lipoproteins to outer membranes. This leucine is present in a loop protruding from mLolB into an aqueous environment, and no analogous loop is present in LolA. Thus, leucine 68 was replaced with other residues. Replacement by acidic, but not hydrophobic, residues generated for the first time mLolB derivatives that can accept but cannot localize lipoproteins to outer membranes. Moreover, deletion of the leucine with neighboring residues impaired the lipoprotein receptor activity. Based on these observations, the roles of the protruding loop of LolB in the last step of lipoprotein sorting are discussed.

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