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Comparative biochemistry of GH3, GH20 and GH84 β-N-acetyl-D-hexosaminidases and recent progress in selective inhibitor discovery

机译:GH3,GH20和GH84β-N-乙酰基-D-己糖胺酶的比较生化和选择性抑制剂发现的最新进展

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摘要

Glycosyl hydrolase family 3, 20 and 84 β-N-acetyl-D-hexosaminidases are widely distributed enzymes that function in energy metabolism, cell proliferation, signal transduction as well as in pathogen-related inflammation and autoimmune diseases. Sharing the same retaining catalytic mechanism, they are distinguished from each other in terms of structure rather than substrate-enzyme transition state. Selective inhibition of each of these enzymes that exploits the structural differences would appear promising in the regulation and investigation of their corresponding life functions within the organism. Thanks to molecular structural biology, detailed structures of GH3, 20 and 84 β-N-acetyl-D-hexosaminidases have become available at the atomic level. This review gives a panoramic description and comparison of the enzymes catalytic mechanisms, overall structures, active site architectures as well as structure-based analysis of inhibition, with the hope of exploiting novel targets for developing novel drugs and pesticides.
机译:糖基水解酶家族3、20和84β-N-乙酰基-D-己糖胺酶是广泛分布的酶,在能量代谢,细胞增殖,信号转导以及病原体相关的炎症和自身免疫性疾病中起作用。它们具有相同的保持催化机理,它们在结构上而不是在底物-酶的过渡态方面彼此区别。利用这些结构差异对这些酶中的每一种进行选择性抑制,在调节和研究其在生物体内的相应生命功能方面似乎很有希望。由于分子结构生物学,GH3、20和84个β-N-乙酰基-D-己糖胺酶的详细结构已在原子水平上可用。这篇综述给出了酶催化机理,总体结构,活性位点结构以及基于结构的抑制作用分析的全景描述和比较,希望能够利用新的靶标开发新型药物和农药。

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