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Enzymatic cellulose oxidation is linked to lignin by long-range electron transfer

机译:通过远程电子转移将酶纤维素氧化与木质素相连

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摘要

Enzymatic oxidation of cell wall polysaccharides by lytic polysaccharide monooxygenases (LPMOs) plays a pivotal role in the degradation of plant biomass. While experiments have shown that LPMOs are copper dependent enzymes requiring an electron donor, the mechanism and origin of the electron supply in biological systems are only partly understood. We show here that insoluble high molecular weight lignin functions as a reservoir of electrons facilitating LPMO activity. The electrons are donated to the enzyme by long-range electron transfer involving soluble low molecular weight lignins present in plant cell walls. Electron transfer was confirmed by electron paramagnetic resonance spectroscopy showing that LPMO activity on cellulose changes the level of unpaired electrons in the lignin. The discovery of a long-range electron transfer mechanism links the biodegradation of cellulose and lignin and sheds new light on how oxidative enzymes present in plant degraders may act in concert.
机译:通过裂解多糖单氧基酶(LPMOS)的细胞壁多糖的酶促氧化在植物生物质的降解中起着枢转作用。虽然实验表明,LPMO是需要电子供体的铜依赖性酶,但是在生物系统中的电子供应机构和起源仅部分地理解。我们在此显示,不溶性高分子量木质素用作促进LPMO活性的电子储存器。通过在植物细胞壁中存在的可溶性低分子量木质素的远程电子转移,将电子捐赠给酶。通过电子顺磁共振光谱证实电子转移,显示纤维素的LPMO活性会改变木质素中未配对的电子水平。远程电子转移机制的发现将纤维素和木质素的生物降解链接,并阐明了植物降解中存在的氧化酶的新光可以与音乐会起作用。

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