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Structural basis of the interaction between the putative adhesion-involved and iron-regulated FrpD and FrpC proteins of Neisseria meningitidis.


ABSTRACT: The iron-regulated protein FrpD from Neisseria meningitidis is an outer membrane lipoprotein that interacts with very high affinity (Kd?~?0.2?nM) with the N-terminal domain of FrpC, a Type I-secreted protein from the Repeat in ToXin (RTX) protein family. In the presence of Ca2+, FrpC undergoes Ca2+ -dependent protein trans-splicing that includes an autocatalytic cleavage of the Asp414-Pro415 peptide bond and formation of an Asp414-Lys isopeptide bond. Here, we report the high-resolution structure of FrpD and describe the structure-function relationships underlying the interaction between FrpD and FrpC1-414. We identified FrpD residues involved in FrpC1-414 binding, which enabled localization of FrpD within the low-resolution SAXS model of the FrpD-FrpC1-414 complex. Moreover, the trans-splicing activity of FrpC resulted in covalent linkage of the FrpC1-414 fragment to plasma membrane proteins of epithelial cells in vitro, suggesting that formation of the FrpD-FrpC1-414 complex may be involved in the interaction of meningococci with the host cell surface.

SUBMITTER: Sviridova E 

PROVIDER: S-EPMC5233953 | biostudies-literature | 2017 Jan

REPOSITORIES: biostudies-literature

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Structural basis of the interaction between the putative adhesion-involved and iron-regulated FrpD and FrpC proteins of Neisseria meningitidis.

Sviridova Ekaterina E   Rezacova Pavlina P   Bondar Alexey A   Veverka Vaclav V   Novak Petr P   Schenk Gundolf G   Svergun Dmitri I DI   Kuta Smatanova Ivana I   Bumba Ladislav L  

Scientific reports 20170113


The iron-regulated protein FrpD from Neisseria meningitidis is an outer membrane lipoprotein that interacts with very high affinity (K<sub>d</sub> ~ 0.2 nM) with the N-terminal domain of FrpC, a Type I-secreted protein from the Repeat in ToXin (RTX) protein family. In the presence of Ca<sup>2+</sup>, FrpC undergoes Ca<sup>2+</sup> -dependent protein trans-splicing that includes an autocatalytic cleavage of the Asp<sub>414</sub>-Pro<sub>415</sub> peptide bond and formation of an Asp<sub>414</sub>  ...[more]

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