首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Proof for a nonproteinaceous calcium-selective channel in Escherichia coli by total synthesis from (R)-3-hydroxybutanoic acid and inorganic polyphosphate
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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

机译:由(R)-3-羟基丁酸和无机多磷酸酯的全合成证明大肠杆菌中非蛋白质钙选择性通道

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摘要

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.
机译:传统上,天然产物的结构和性质是通过全合成并与真实样品进行比较来确定的。现在,我们已将此程序应用于从细菌质膜分离的第一个非蛋白质离子通道,该通道由聚(3-羟基丁酸酯)和聚磷酸钙的复合物组成。为此,我们现在已经合成了128-mer羟基丁酸,并制备了与无机多磷酸钙(平均65-mer)的复合物,该复合物被掺入了合成磷脂的平面脂质双层中。我们据此提供的数据清楚地表明,完全合成的复合物形成的通道在电压依赖性电导,对二价阳离子的选择性以及它们的阻断行为(由La 3 + )与从大肠杆菌分离的通道。讨论了我们的发现对益生元化学,生物化学和生物学的意义。

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