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Chemoenzymatic Synthesis of Thiazolyl Peptide Natural Products Featuring an Enzyme-Catalyzed Formal 4 + 2 Cycloaddition

机译:化学酶促合成噻唑肽天然产物的酶催化形式4 + 2环加成反应

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摘要

Thiocillins from Bacillus cereus ATCC 14579 are members of the well-known thiazolyl peptide class of natural product antibiotics, the biosynthesis of which has recently been shown to proceed via posttranslational modification of ribosomally encoded precursor peptides. It has long been hypothesized that the final step of thiazolyl peptide biosynthesis involves a formal [4 + 2] cycloaddition between two dehydroalanines, a unique transformation that had eluded enzymatic characterization. Here we demonstrate that TclM, a single enzyme from the thiocillin biosynthetic pathway, catalyzes this transformation. To facilitate characterization of this new class of enzyme, we have developed a combined chemical and biological route to the complex peptide substrate, relying on chemical synthesis of a modified C-terminal fragment and coupling to a 38-residue leader peptide by means of native chemical ligation (NCL). This strategy, combined with active enzyme, provides a new chemoenzymatic route to this promising class of antibiotics.
机译:来自蜡样芽孢杆菌ATCC 14579的硫菌素是天然产物抗生素的著名的噻唑基肽类的成员,最近已证明其生物合成通过核糖体编码的前体肽的翻译后修饰来进行。长期以来一直有人认为,噻唑基肽生物合成的最后一步涉及两个脱氢丙氨酸之间的正式[4 + 2]环加成反应,这种独特的转化过程还没有酶的表征。在这里,我们证明了TclM,一种来自thiocillin生物合成途径的单一酶,催化这种转化。为了促进这种新型酶的表征,我们已经开发了一种化学和生物学相结合的方法来合成复杂的肽底物,依靠化学合成修饰的C端片段并通过天然化学方法偶联到38个残基的前导肽上结扎(NCL)。这种策略与活性酶结合,为这一有前途的抗生素类别提供了新的化学酶促途径。

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