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精氨酸脱羧酶的纯化和特性;各种抑制剂的抑制动力学。

Purification and Characterization of Ornithine Decarboxylase from ; Kinetics of Inhibition by Various Inhibitors.

机构信息

Enzymology and Fungal Biotechnology Lab (EFBL), Botany and Microbiology Department, Faculty of Science, Zagazig University, Zagazig 44519, Egypt.

Biology Department, Faculty of Science, King Abdulaziz University, Saudi Arabia.

出版信息

Molecules. 2019 Jul 29;24(15):2756. doi: 10.3390/molecules24152756.

Abstract

l-Ornithine decarboxylase (ODC) is the rate-limiting enzyme of polyamine synthesis in humans and fungi. Elevated levels of polyamine by over-induction of ODC activity in response to tumor-promoting factors has been frequently reported. Since ODC from fungi and human have the same molecular properties and regulatory mechanisms, thus, fungal ODC has been used as model enzyme in the preliminary studies. Thus, the aim of this work was to purify ODC from fungi, and assess its kinetics of inhibition towards various compounds. Forty fungal isolates were screened for ODC production, twenty fungal isolates have the higher potency to grow on L-ornithine as sole nitrogen source. was the most potent ODC producer (2.1 µmol/mg/min), followed by and . These isolates were molecularly identified based on their ITS sequences, which have been deposited in the NCBI database under accession numbers MH156195, MH155304 and MH152411, respectively. ODC was purified and characterized from using SDS-PAGE, showing a whole molecule mass of ~110 kDa and a 50 kDa subunit structure revealing its homodimeric identity. The enzyme had a maximum activity at 37 °C, pH 7.4-7.8 and thermal stability for 20 h at 37 °C, and 90 days storage stability at 4 °C. ODC had a maximum affinity () for l-ornithine, l-lysine and l-arginine (0.95, 1.34 and 1.4 mM) and catalytic efficiency (/) (4.6, 2.83, 2.46 × 10 mM·s). The enzyme activity was strongly inhibited by DFMO (0.02 µg/mL), curcumin (IC 0.04 µg/mL), propargylglycine (20.9 µg/mL) and hydroxylamine (32.9 µg/mL). These results emphasize the strong inhibitory effect of curcumin on ODC activity and subsequent polyamine synthesis. Further molecular dynamic studies to elucidate the mechanistics of ODC inhibition by curcumin are ongoing.

摘要

鸟氨酸脱羧酶(ODC)是人类和真菌中多胺合成的限速酶。研究发现,肿瘤促进因子可诱导 ODC 活性升高,从而导致多胺水平升高。由于真菌和人类的 ODC 具有相同的分子特性和调节机制,因此真菌 ODC 已被用作初步研究的模型酶。因此,本工作的目的是从真菌中纯化 ODC,并评估其对各种化合物的抑制动力学。筛选了 40 株真菌分离株以检测 ODC 的产生,其中 20 株真菌分离株具有更强的以 L-鸟氨酸为唯一氮源生长的能力。 是最强的 ODC 产生菌(2.1 µmol/mg/min),其次是 和 。根据 ITS 序列对这些分离株进行了分子鉴定,这些序列已在 NCBI 数据库中以 MH156195、MH155304 和 MH152411 的 accession numbers 进行了注册。使用 SDS-PAGE 从 中纯化和表征 ODC,显示整个分子质量约为 110 kDa,50 kDa 亚基结构揭示了其同源二聚体身份。该酶在 37°C、pH7.4-7.8 下具有最大活性,在 37°C 下具有 20 小时的热稳定性,在 4°C 下具有 90 天的储存稳定性。 ODC 对 l-鸟氨酸、l-赖氨酸和 l-精氨酸(0.95、1.34 和 1.4 mM)的最大亲和力()和催化效率(/)(4.6、2.83、2.46×10 mM·s)最高。DFMO(0.02 µg/mL)、姜黄素(IC 0.04 µg/mL)、炔丙基甘氨酸(20.9 µg/mL)和羟胺(32.9 µg/mL)强烈抑制酶活性。这些结果强调了姜黄素对 ODC 活性和随后多胺合成的强烈抑制作用。正在进行进一步的分子动力学研究,以阐明姜黄素抑制 ODC 活性的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f7a/6696095/20c70f842304/molecules-24-02756-g001.jpg

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