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Proof for a nonproteinaceous calcium-selective channel in Escherichia coli by total synthesis from ( R )-3-hydroxybutanoic acid and inorganic polyphosphate
Author(s) -
Sudipto Das,
Urs D. Lengweiler,
Dieter Seebàch,
Rosetta N. Reusch
Publication year - 1997
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.94.17.9075
Subject(s) - polyphosphate , escherichia coli , divalent , chemistry , calcium , membrane , lipid bilayer , biochemistry , biophysics , biology , organic chemistry , phosphate , gene
Traditionally, the structure and properties of natural products have been determined by total synthesis and comparison with authentic samples. We have now applied this procedure to the first nonproteinaceous ion channel, isolated from bacterial plasma membranes, and consisting of a complex of poly(3-hydroxybutyrate) and calcium polyphosphate. To this end, we have now synthesized the 128-mer of hydroxybutanoic acid and prepared a complex with inorganic calcium polyphosphate (average 65-mer), which was incorporated into a planar lipid bilayer of synthetic phospholipids. We herewith present data that demonstrate unambiguously that the completely synthetic complex forms channels that are indistinguishable in their voltage-dependent conductance, in their selectivity for divalent cations, and in their blocking behavior (by La3+) from channels isolated from Escherichia coli. The implications of our finding for prebiotic chemistry, biochemistry, and biology are discussed.

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