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首页> 外文期刊>The FEBS journal >Structural insights into the unique polylactate-degrading mechanism of Thermobifida alba cutinase
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Structural insights into the unique polylactate-degrading mechanism of Thermobifida alba cutinase

机译:对Thermobifida Con Cucinase的独特聚酯降解机制的结构见解

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摘要

Cutinases are enzymes known to degrade polyester-type plastics. Est119, a plastic-degrading type of cutinase from Thermobifida alba AHK119 (herein called Ta_cut), shows a broad substrate specificity toward polyesters, and can degrade substrates including polylactic acid (PLA). However, the PLA-degrading mechanism of cutinases is still poorly understood. Here, we report the structure complexes of cutinase with ethyl lactate (EL), the constitutional unit. From this complex structure, the electron density maps clearly showed one lactate (LAC) and one EL occupying different positions in the active site cleft. The binding mode of EL is assumed to show a figure prior to reaction and LAC is an after-reaction product. These complex structures demonstrate the role of active site residues in the esterase reaction and substrate recognition. The complex structures were compared with other documented complex structures of cutinases and with the structure of PETase from Ideonella sakaiensis. The amino acid residues involved in substrate interaction are highly conserved among these enzymes. Thus, mapping the precise interactions in the Ta_cut and EL complex will pave the way for understanding the plastic-degrading mechanism of cutinases and suggest ways of creating more potent enzymes by structural protein engineering.
机译:Cutinase是已知用于降解聚酯型塑料的酶。 EST119,来自Thermobifida Alba AHK119(在本文称为Ta_Cut)的塑性降解类型的Cutinase,显示出朝向聚酯的宽底物特异性,并且可以降低包括聚乳酸(PLA)的底物。然而,Cutinases的PLA降解机制仍然不知识。在这里,我们报告了用乙酸乙酯(EL),构成单元的Cux酶的结构复合物。从这种复杂的结构中,电子密度图清楚地显示了一个乳酸(LAC)和一个EL占据活性位点裂缝中的不同位置。假设EL的结合模式显示在反应之前显示图,并且LA1是后反应产物。这些复杂结构表明了活性位点残留在酯酶反应和底物识别中的作用。将复杂结构与Cucinases的其他记录的复杂结构进行比较,以及来自IdeoNella Sakaiensis的素物的结构。参与底物相互作用的氨基酸残基在这些酶中受到高度保守。因此,将Ta_Cut和El络合物中的精确相互作用映射将铺平以理解Culinases的塑性降解机制,并提出通过结构蛋白工程产生更多有效酶的方法。

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