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首页> 外文期刊>Process Biochemistry >Identifying metabolic pathway intermediates that modulate the gallate dioxygenase (DesB) from Sphingobium sp. strain SYK-6
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Identifying metabolic pathway intermediates that modulate the gallate dioxygenase (DesB) from Sphingobium sp. strain SYK-6

机译:鉴定从鞘盆SP调节的Gallate DiOxygenase(DESB)的代谢途径中间体。 菌株SYK-6

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Lignin is often considered an underutilized carbon source for the production of biofuels and other value-added compounds. Depolymerized lignin results in a collection of different aromatic compounds that have their own metabolic pathways for conversion into central metabolites. This investigation describes the chemical crosstalk of compounds between different metabolic pathways involved in the catabolism of lignin. Specifically, seven compounds were identified as inhibitors of the dioxygenase DesB. The most potent inhibitor, protocatechuate, moderately impacts both v(max) and K-M of DesB (71 s(-1) and 167 mu M versus 130 s(-1) and 123 mu M, in the presence and absence of protocatechuate, respectively) suggesting a mixed (competitive and non-competitive) inhibition profile. Molecular docking identified a putative allosteric pocket adjacent to the active site, in a position analogous to one identified previously for a related dioxygenase. This work demonstrates that lignin catabolic pathway intermediates can modulate the activity of multiple enzymes within the lignin degradation pathway and need to be considered when engineering organisms to utilize lignin for biomass conversion.
机译:木质素通常被认为是生产生物燃料和其他增值化合物的未充分利用的碳源。解聚的木质素导致各种不同芳族化合物的集合,其具有它们自身代谢途径,用于转化为中央代谢物。本研究描述了在木质素分解代谢的不同代谢途径之间化合物的化学串扰。具体地,将七种化合物鉴定为二氧化基金酶DES的抑制剂。最有效的抑制剂,ProtocaTech,适度影响V(MAX)和DEM的v(71秒)和167μm与130s(-1)和123μm,分别在存在和不存在的情况下)建议混合(竞争性和非竞争性)抑制概况。分子对接鉴定了与活性位点相邻的推定的颠袋,其在类似于先前鉴定的一个鉴定的与相关的二恶英酶酶的位置。这项工作表明,木质素分解代谢途径中间体可以调节木质素降解途径内多种酶的活性,并且需要考虑工程生物以利用木质素进行生物量转化。

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