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Two Angular Dioxygenases Contribute to the Metabolic Versatility of Dibenzofuran-Degrading Rhodococcus sp. Strain HA01▿

机译:两个角双加氧酶有助于降解二苯并呋喃的红球菌sp。的代谢全能。菌株HA01▿

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摘要

Rhodococcus sp. strain HA01, isolated through its ability to utilize dibenzofuran (DBF) as the sole carbon and energy source, was also capable, albeit with low activity, of transforming dibenzo-p-dioxin (DD). This strain could also transform 3-chlorodibenzofuran (3CDBF), mainly by angular oxygenation at the ether bond-carrying carbon (the angular position) and an adjacent carbon atom, to 4-chlorosalicylate as the end product. Similarly, 2-chlorodibenzofuran (2CDBF) was transformed to 5-chlorosalicylate. However, lateral oxygenation at the 3,4-positions was also observed and yielded the novel product 2-chloro-3,4-dihydro-3,4-dihydroxydibenzofuran. Two gene clusters encoding enzymes for angular oxygenation (dfdA1A2A3A4 and dbfA1A2) were isolated, and expression of both was observed during growth on DBF. Heterologous expression revealed that both oxygenase systems catalyze angular oxygenation of DBF and DD but exhibited complementary substrate specificity with respect to CDBF transformation. While DfdA1A2A3A4 oxygenase, with high similarity to DfdA1A2A3A4 oxygenase from Terrabacter sp. strain YK3, transforms 3CDBF by angular dioxygenation at a rate of 29% ± 4% that of DBF, 2CDBF was not transformed. In contrast, DbfA1A2 oxygenase, with high similarity to the DbfA1A2 oxygenase from Terrabacter sp. strain DBF63, exhibited complementary activity with angular oxygenase activity against 2CDBF but negligible activity against 3CDBF. Thus, Rhodococcus sp. strain HA01 constitutes the first described example of a bacterial strain where coexpression of two angular dioxygenases was observed. Such complementary activity allows for the efficient transformation of chlorinated DBFs.
机译:红球菌通过利用二苯并呋喃(DBF)作为唯一碳源和能源的能力分离出的HA01菌株,尽管活性低,但也具有转化二苯并对二恶英(DD)的能力。该菌株还可以通过主要在携带醚键的碳(角位置)和相邻的碳原子处的角氧合将3-氯二苯并呋喃(3CDBF)转化为最终产物4-氯水杨酸酯。类似地,将2-氯二苯并呋喃(2CDBF)转化为5-氯水杨酸酯。然而,还观察到了在3,4-位的侧向氧合,得到了新产物2-氯-3,4-二氢-3,4-二羟基二苯并呋喃。分离了两个编码有角氧合酶的基因簇(dfdA1A2A3A4和dbfA1A2),并在DBF上生长期间观察到两者的表达。异源表达表明,两种加氧酶系统均催化DBF和DD的角氧化,但相对于CDBF转化表现出互补的底物特异性。而DfdA1A2A3A4氧化酶与Terraterra sp。的DfdA1A2A3A4氧化酶高度相似。菌株YK3,通过角双加氧以DBF的29%±4%的速率转化3CDBF,未转化2CDBF。相反,DbfA1A2加氧酶与Terraterra sp。的DbfA1A2加氧酶具有高度相似性。菌株DBF63显示出对2CDBF具有角氧化酶活性的互补活性,但是对3CDBF的活性可忽略不计。因此,红球菌属。菌株HA01构成细菌菌株的第一个描述的实例,其中观察到两个角双加氧酶的共表达。这样的互补活性允许氯化DBF的有效转化。

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