Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, Salerno, Italy.
Department of Biology, University Federico II of Naples, University Campus of Monte Sant'Angelo, Via Cinthia 4, Naples, Italy.
Sci Rep. 2023 Feb 1;13(1):1835. doi: 10.1038/s41598-023-28908-2.
Livestock breeding activities and pharmaceutical wastes lead to considerable accumulation of steroid hormones and estrogens in wastewaters. Here estrogens act as pro-cancerogenic agents and endocrine disruptors interfering with the sexual development of aquatic animals and having toxic effects in humans. Environmental bacteria play a vital role in estrogens degradation. Their wide reservoir of enzymes, such as ring cleavage dioxygenases (RCDs), can degrade the steroid nucleus, catalyzing the meta-cleavage of A, B or D steroid rings. In this work, 4 extra-diol ring cleavage dioxygenases (ERCDs), PP28735, PP26077, PP00124 and PP00193, were isolated from the marine sphingomonad Novosphingobium sp. PP1Y and characterized. Enzymes kinetic parameters were determined on different synthetic catecholic substrates. Then, the bioconversion of catechol estrogens was evaluated. PP00124 showed to be an efficient catalyst for the degradation of 4-hydroxyestradiol (4-OHE2), a carcinogenic hydroxylated derivate of E2. 4-OHE2 complete cleavage was obtained using PP00124 both in soluble form and in whole recombinant E. coli cells. LC-MS/MS analyses confirmed the generation of a semialdehyde product, through A-ring meta cleavage. To the best of our knowledge, PP00124 is the first characterized enzyme able to directly degrade 4-OHE2 via meta cleavage. Moreover, the complete 4-OHE2 biodegradation using recombinant whole cells highlighted advantages for bioremediation purposes.
畜牧业活动和制药废物导致类固醇激素和雌激素在废水中大量积累。在这里,雌激素作为致癌物质和内分泌干扰物,干扰水生动物的性发育,并对人类产生毒性作用。环境细菌在雌激素降解中起着至关重要的作用。它们广泛的酶储备,如环裂解双加氧酶(RCDs),可以降解类固醇核,催化 A、B 或 D 类固醇环的间裂解。在这项工作中,从海洋鞘氨醇单胞菌 Novosphingobium sp. PP1Y 中分离出 4 种额外二醇环裂解双加氧酶(ERCDs),即 PP28735、PP26077、PP00124 和 PP00193,并对其进行了表征。在不同的合成儿茶酚底物上测定了酶的动力学参数。然后,评估了儿茶酚雌激素的生物转化。PP00124 被证明是 4-羟基雌二醇(4-OHE2)降解的有效催化剂,4-OHE2 是 E2 的一种致癌羟化衍生物。使用 PP00124 的可溶性形式和整个重组大肠杆菌细胞都可以获得 4-OHE2 的完全裂解。LC-MS/MS 分析证实了通过 A 环间裂解生成半醛产物。据我们所知,PP00124 是第一种能够通过间裂解直接降解 4-OHE2 的特征酶。此外,使用重组全细胞进行完全 4-OHE2 生物降解突出了生物修复目的的优势。