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Functional and Phylogenetic Divergence of Fungal Adenylate-Forming Reductases

机译:真菌腺苷酸形成还原酶的功能和系统发育分化

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摘要

A key step in fungal L-lysine biosynthesis is catalyzed by adenylate-forming L-alpha-aminoadipic acid reductases, organized in domains for adenylation, thiolation, and the reduction step. However, the genomes of numerous ascomycetes and basidiomycetes contain an unexpectedly large number of additional genes encoding similar but functionally distinct enzymes. Here, we describe the functional in vitro characterization of four reductases which were heterologously produced in Escherichia coli. The Ceriporiopsis subvermispora serine reductase Nps1 features a terminal ferredoxin-NADP(+) reductase (FNR) domain and thus belongs to a hitherto undescribed class of fungal multidomain enzymes. The second major class is characterized by the canonical terminal short-chain dehydrogenase/reductase domain and represented by Ceriporiopsis subvermispora Nps3 as the first biochemically characterized L-alpha-aminoadipic acid reductase of basidiomycete origin. Aspergillus flavus L-tyrosine reductases LnaA and LnbA are members of a distinct phylogenetic clade. Phylogenetic analysis supports the view that fungal adenylate-forming reductases are more diverse than previously recognized and belong to four distinct classes.
机译:真菌 L-赖氨酸生物合成的一个关键步骤是由腺苷酸形成的 L-α-氨基己二酸还原酶催化的,该还原酶在腺苷酸化、硫醇化和还原步骤的结构域中组织。然而,许多子囊菌和担子菌的基因组包含大量编码相似但功能不同的酶的额外基因。在这里,我们描述了在大肠杆菌中异源产生的四种还原酶的功能性体外表征。Ceriporiopsis subvermispora 丝氨酸还原酶 Nps1 具有末端铁氧还蛋白-NADP(+) 还原酶 (FNR) 结构域,因此属于迄今为止未描述的一类真菌多结构域酶。第二大类的特征是典型的末端短链脱氢酶/还原酶结构域,并以 Ceriporiopsis subvermispora Nps3 为代表,是第一个生化表征的担子菌来源的 L-α-氨基己二酸还原酶。黄曲霉 L-酪氨酸还原酶 LnaA 和 LnbA 是不同系统发育分支的成员。系统发育分析支持这样的观点,即真菌腺苷酸形成还原酶比以前认识到的更多样化,属于四个不同的类别。

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