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On the functional characterization of lytic polysaccharide monooxygenases (LPMOs)

机译:关于溶解性多糖单加氧酶(LPMO)的功能表征

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摘要

Lytic polysaccharide monooxygenases (LPMOs) are abundant in nature and best known for their role in the enzymatic conversion of recalcitrant polysaccharides such as chitin and cellulose. LPMO activity requires an oxygen co-substrate, which was originally thought to be O2, but which may also be H2O2. Functional characterization of LPMOs is not straightforward because typical reaction mixtures will promote side reactions, including auto-catalytic inactivation of the enzyme. For example, despite some recent progress, there is still limited insight into the kinetics of the LPMO reaction. Recent discoveries concerning the role of H2O2 in LPMO catalysis further complicate the picture. Here, we review commonly used methods for characterizing LPMOs, with focus on benefits and potential pitfalls, rather than on technical details. We conclude by pointing at a few key problems and potential misconceptions that should be taken into account when interpreting existing data and planning future experiments.
机译:裂解多糖单加氧酶(LPMO)性质丰富,最著名的是它们在难降解多糖(例如几丁质和纤维素)的酶促转化中的作用。 LPMO活性需要氧共底物,该底物最初被认为是O2,但也可能是H2O2。 LPMO的功能表征并不简单,因为典型的反应混合物会促进副反应,包括酶的自催化失活。例如,尽管最近有一些进展,但对LPMO反应动力学的认识仍然有限。关于H2O2在LPMO催化中的作用的最新发现使情况更加复杂。在这里,我们将介绍表征LPMO的常用方法,重点是收益和潜在陷阱,而不是技术细节。最后,我们指出了一些关键问题和潜在的误解,在解释现有数据和计划未来的实验时应予以考虑。

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