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Structure and mechanism of benzaldehyde dehydrogenase from Pseudomonas putida ATCC 12633 a member of the Class 3 aldehyde dehydrogenase superfamily

机译:3类乙醛脱氢酶超家族成员恶臭假单胞菌ATCC 12633的苯甲醛脱氢酶的结构和机理

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摘要

Benzaldehyde dehydrogenase from Pseudomonas putida (PpBADH) belongs to the Class 3 aldehyde dehydrogenase (ALDH) family. The Class 3 ALDHs are unusual in that they are generally dimeric (rather than tetrameric), relatively non-specific and utilize both NAD+ and NADP+. To date, X-ray structures of three Class 3 ALDHs have been determined, of which only two have cofactor bound, both in the NAD+ form. Here we report the crystal structure of PpBADH in complex with NADP+ and a thioacyl intermediate adduct. The overall architecture of PpBADH resembles that of most other members of the ALDH superfamily, and the cofactor binding residues are well conserved. Conversely, the pattern of cofactor binding for the rat Class 3 ALDH differs from that of PpBADH and other ALDHs. This has been interpreted in terms of a different mechanism for the rat enzyme. Comparison with the PpBADH structure, as well as multiple sequence alignments, suggest that one of two conserved glutamates, at positions 215 (209 in rat) and 337 (333 in rat), would act as the general base necessary to hydrolyze the thioacyl intermediate. While the latter is the general base in the rat Class 3 ALDH, site-specific mutagenesis indicates that Glu215 is the likely candidate for PpBADH, a result more typical of the Class 1 and 2 ALDH families. Finally, this study shows that hydride transfer is not rate limiting, lending further credence to the suggestion that PpBADH is more similar to the Class 1 and 2 ALDHs than it is to other Class 3 ALDHs.
机译:来自恶臭假单胞菌的苯甲醛脱氢酶(PpBADH)属于3类醛脱氢酶(ALDH)家族。第3类ALDH很不寻常,因为它们通常是二聚体(而不是四聚体),相对而言是非特异性的,并且同时使用NAD + 和NADP + 。迄今为止,已经确定了三个3类ALDH的X射线结构,其中只有两个具有辅因子结合,均为NAD + 形式。在这里,我们报道了与NADP + 和硫代酰基中间体加合物复合的PpBADH的晶体结构。 PpBADH的总体结构与ALDH超家族的大多数其他成员相似,并且辅因子结合残基非常保守。相反,大鼠第3类ALDH的辅因子结合模式不同于PpBADH和其他ALDH。已经根据大鼠酶的不同机制解释了这一点。与PpBADH结构的比较以及多重序列比对表明,在位置215(大鼠209)和337(大鼠333)中,两个保守的谷氨酸盐之一将作为水解硫酰基中间体所需的一般碱基。尽管后者是大鼠3类ALDH的通用碱基,但位点特异性诱变表明Glu215是PpBADH的可能候选者,这是1类和2类ALDH家族的更典型结果。最后,这项研究表明氢化物转移不受速率限制,这进一步证明了PpBADH与1类和2类ALDH相比与其他3类ALDH更相似。

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