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4P0Z

Structure of the double stranded DNA binding type IV secretion protein TraN from Enterococcus

Summary for 4P0Z
Entry DOI10.2210/pdb4p0z/pdb
Related4EDD
DescriptorAM32 (2 entities in total)
Functional Keywordsgram-positive, conjugation, helix-turn-helix, dsdna binding, dna binding protein
Biological sourceEnterococcus faecalis
Total number of polymer chains1
Total formula weight17787.53
Authors
Goessweiner-mohr, N.,Fercher, C.,Keller, W. (deposition date: 2014-02-23, release date: 2014-07-30, Last modification date: 2023-12-27)
Primary citationGoessweiner-Mohr, N.,Eder, M.,Hofer, G.,Fercher, C.,Arends, K.,Birner-Gruenberger, R.,Grohmann, E.,Keller, W.
Structure of the double-stranded DNA-binding type IV secretion protein TraN from Enterococcus.
Acta Crystallogr.,Sect.D, 70:2376-2389, 2014
Cited by
PubMed Abstract: Conjugative transfer through type IV secretion multiprotein complexes is the most important means of spreading antimicrobial resistance. Plasmid pIP501, frequently found in clinical Enterococcus faecalis and Enterococcus faecium isolates, is the first Gram-positive (G+) conjugative plasmid for which self-transfer to Gram-negative (G-) bacteria has been demonstrated. The pIP501-encoded type IV secretion system (T4SS) protein TraN localizes to the cytoplasm and shows specific DNA binding. The specific DNA-binding site upstream of the pIP501 origin of transfer (oriT) was identified by a novel footprinting technique based on exonuclease digestion and sequencing, suggesting TraN to be an accessory protein of the pIP501 relaxase TraA. The structure of TraN was determined to 1.35 Å resolution. It revealed an internal dimer fold with antiparallel β-sheets in the centre and a helix-turn-helix (HTH) motif at both ends. Surprisingly, structurally related proteins (excisionases from T4SSs of G+ conjugative transposons and transcriptional regulators of the MerR family) resembling only one half of TraN were found. Thus, TraN may be involved in the early steps of pIP501 transfer, possibly triggering pIP501 TraA relaxase activity by recruiting the relaxosome to the assembled mating pore.
PubMed: 25195751
DOI: 10.1107/S1399004714014187
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.35 Å)
Structure validation

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数据于2024-10-30公开中

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