Department of Medicinal Chemistry, University of Utah, Salt Lake City, Utah 84112, United States.
The Marine Science Institute, University of the Philippines, Diliman, Quezon City 1101, Philippines.
J Nat Prod. 2022 Mar 25;85(3):479-484. doi: 10.1021/acs.jnatprod.1c01049. Epub 2022 Feb 23.
Bacteria use small molecules to impose strict regulation over the acquisition, uptake, and sequestration of transition metal ions. Low-abundance nutrient metals, such as Fe(III), need to be scavenged from the environment by high-affinity chelating molecules called siderophores. Conversely, metal ions that become toxic at high concentrations need to be sequestered and detoxified. Often, bacteria produce a suite of compounds that bind various metal ions at different affinities in order to maintain homeostasis. Turnerbactin, a triscatecholate siderophore isolated from the intracellular shipworm symbiont T7901, is responsible for iron regulation and uptake. Herein, another series of compounds are described that complex with iron, copper, and molybdenum in solution. Teredinibactins belong to a class of metal-binding molecules that utilize a phenolate-thiazoline moiety in the coordination of metal ions. In contrast to other compounds in this class, such as yersiniabactin, the phenyl ring is decorated with a 2,4-dihydroxy-3-halo substitution pattern. UV-vis absorption spectroscopy based titration experiments with CuCl show the formation of an intermediate complex at substoichiometric concentrations and conversion to a copper-bound complex at 1:1 molar equiv.
细菌使用小分子来严格控制过渡金属离子的获取、摄取和隔离。低丰度的营养金属,如 Fe(III),需要通过称为铁载体的高亲和力螯合分子从环境中掠夺。相反,在高浓度下变得有毒的金属离子需要被隔离和解毒。通常,细菌会产生一系列化合物,以不同的亲和力结合各种金属离子,以维持体内平衡。从细胞内船蛆共生体 T7901 中分离出的三儿茶酚铁载体 Turnerbactin 负责铁的调节和摄取。在此,描述了另一系列在溶液中与铁、铜和钼形成配合物的化合物。Teredinibactins 属于一类金属结合分子,利用酚盐-噻唑啉部分来配位金属离子。与该类中的其他化合物(如耶尔森菌素)不同,苯环上带有 2,4-二羟基-3-卤取代模式。基于 CuCl 的紫外可见吸收光谱滴定实验表明,在亚化学计量浓度下形成了一个中间配合物,在 1:1 摩尔等当量时转化为铜结合配合物。