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Neutron and high-resolution room-temperature X-ray data collection from crystallized lytic polysaccharide monooxygenase

机译:中子和高分辨率室温X射线数据收集来自结晶的裂解多糖单氧化酶

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摘要

Bacteria and fungi express lytic polysaccharide monooxgyenase (LPMO) enzymes that act in conjunction with canonical hydrolytic sugar-processing enzymes to rapidly convert polysaccharides such as chitin, cellulose and starch to single monosaccharide products. In order to gain a better understanding of the structure and oxidative mechanism of these enzymes, large crystals (13 mm 3) of a chitin-processing LPMO from the Gram-positive soil bacterium Jonesia denitrificans were grown and screened for their ability to diffract neutrons. In addition to the collection of neutron diffraction data, which were processed to 2.1 angstrom resolution, a high-resolution room-temperature X-ray diffraction data set was collected and processed to 1.1 angstrom resolution in space group P2(1)2(1)2(1). To our knowledge, this work marks the first successful neutron crystallographic experiment on an LPMO. Joint X-ray/neutron refinement of the resulting data will reveal new details of the structure and mechanism of this recently discovered class of enzymes.
机译:细菌和真菌表达裂解的多糖单氧化酶(LPMO)酶,其与规范水解糖加工酶结合起来,以快速转化多糖,纤维素和淀粉等单次单糖产物。为了更好地理解这些酶的结构和氧化机制,生长和筛选来自革兰氏阳性土壤杀菌者的大蛋白加工LPMO的大晶体(13mm 3),并筛选它们的衍射中子的能力。除了加工成2.1埃分辨率的中子衍射数据的收集之外,收集高分辨率室温X射线衍射数据集,并在空间组P2(1)2(1)中加工至1.1埃千埃分辨率2(1)。为了我们的知识,这项工作标志着LPMO上的第一个成功的中子晶体晶体试验。结果数据的关节X射线/中子细化将揭示最近发现的酶类别的结构和机制的新细节。

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