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表达的大豆根瘤血红蛋白:在氧化应激和硝化应激下的影响。

Expressed Soybean Leghemoglobin: Effect on at Oxidative and Nitrosative Stress.

机构信息

Bach Institute of Biochemistry, Research Center of Biotechnology of the Russian Academy of Sciences, 119071 Moscow, Russia.

出版信息

Molecules. 2021 Nov 28;26(23):7207. doi: 10.3390/molecules26237207.

Abstract

Leghemoglobin (Lb) is an oxygen-binding plant hemoglobin of legume nodules, which participates in the symbiotic nitrogen fixation process. Another way to obtain Lb is its expression in bacteria, yeasts, or other organisms. This is promising for both obtaining Lb in the necessary quantity and scrutinizing it in model systems, e.g., its interaction with reactive oxygen (ROS) and nitrogen (RNS) species. The main goal of the work was to study how Lb expression affected the ability of cells to tolerate oxidative and nitrosative stress. The bacterium with the embedded gene of soybean leghemoglobin contains this protein in an active oxygenated state. The interaction of the expressed Lb with oxidative and nitrosative stress inducers (nitrosoglutathione, -butyl hydroperoxide, and benzylviologen) was studied by enzymatic methods and spectrophotometry. Lb formed NO complexes with heme-nitrosylLb or nonheme iron-dinitrosyl iron complexes (DNICs). The formation of Lb-bound DNICs was also detected by low-temperature electron paramagnetic resonance spectroscopy. Lb displayed peroxidase activity and catalyzed the reduction of organic peroxides. Despite this, -synthesized Lb were more sensitive to stress inducers. This might be due to the energy demand required by the Lb synthesis, as an alien protein consumes bacterial resources and thereby decreases adaptive potential of .

摘要

豆血红蛋白(Lb)是豆科植物根瘤中的一种氧结合植物血红蛋白,参与共生固氮过程。获得 Lb 的另一种方法是在细菌、酵母或其他生物中表达它。这对于获得必要数量的 Lb 并在模型系统中仔细研究它,例如,它与活性氧(ROS)和活性氮(RNS)物种的相互作用,都是有希望的。这项工作的主要目的是研究 Lb 表达如何影响细胞耐受氧化和硝化应激的能力。嵌入大豆豆血红蛋白基因的细菌以含氧的活性状态包含这种蛋白质。通过酶法和分光光度法研究了表达的 Lb 与氧化和硝化应激诱导剂(亚硝酰谷胱甘肽、-丁基过氧化物和苯甲叉二肟)的相互作用。Lb 与血红素-亚硝酰基 Lb 或非血红素铁-二亚硝酰基铁配合物(DNICs)形成 NO 配合物。低温电子顺磁共振波谱也检测到 Lb 结合的 DNICs 的形成。Lb 显示过氧化物酶活性并催化有机过氧化物的还原。尽管如此,合成的 Lb 对应激诱导剂更敏感。这可能是由于 Lb 合成所需的能量需求,因为外来蛋白消耗细菌资源,从而降低了的适应潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce1a/8659191/f1af1d56df14/molecules-26-07207-g001.jpg

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