Demonstration of Molecular Interactions between the Murein Polymerase PBP1B, the Lytic Transglycosylase MltA, and the Scaffolding Protein MipA of Escherichia coli
Enlargement of the stress-bearing murein sacculus of bacteria depends on the coordinated interaction of murein synthases and hydrolases. To understand the mechanism of interaction of these two classes of proteins affinity chromatography and surface plasmon resonance (SPR) studies were performed. The...
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Veröffentlicht in: | The Journal of biological chemistry 1999-03, Vol.274 (10), p.6726-6734 |
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Zusammenfassung: | Enlargement of the stress-bearing murein sacculus of bacteria depends on the coordinated interaction of murein synthases and
hydrolases. To understand the mechanism of interaction of these two classes of proteins affinity chromatography and surface
plasmon resonance (SPR) studies were performed. The membrane-bound lytic transglycosylase MltA when covalently linked to CNBr-activated
Sepharose specifically retained the penicillin-binding proteins (PBPs) 1B, 1C, 2, and 3 from a crude Triton X-100 membrane
extract of Escherichia coli . In the presence of periplasmic proteins also PBP1A was specifically bound. At least five different non-PBPs showed specificity
for MltA-Sepharose. The amino-terminal amino acid sequence of one of these proteins could be obtained, and the corresponding
gene was mapped at 40 min on the E. coli genome. This M ltA- i nteracting p rotein, named MipA, in addition binds to PBP1B, a bifunctional murein transglycosylase/transpeptidase. SPR studies with PBP1B
immobilized to ampicillin-coated sensor chips showed an oligomerization of PBP1B that may indicate a dimerization. Simultaneous
application of MipA and MltA onto a PBP1B sensor chip surface resulted in the formation of a trimeric complex. The dissociation
constant was determined to be about 10 â6 m . The formation of a complex between a murein polymerase (PBP1B) and a murein hydrolase (MltA) in the presence of MipA represents
a first step in a reconstitution of the hypothetical murein-synthesizing holoenzyme, postulated to be responsible for controlled
growth of the stress-bearing sacculus of E. coli. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.274.10.6726 |