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L-Rhamnulose-1-phosphate Aldolase from Thermotoga maritima in Organic Synthesis: One-pot Multistep Reactions for the Preparation of Imino- and Nitrocyclitols

机译:L-鼠李糖-1-磷酸醛缩酶在有机合成中的热解:一锅多步反应制备的氨基和硝基环糖醇。

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摘要

Rhamnulose-1-phosphate aldolase from Thermotoga maritima (Rhu1PATm) has been recently cloned and characterized. This hyperthermophilic enzyme offers intriguing possibilities for practical catalysis. This is due to its high stability under extreme reaction conditions, such as high temperature or the presence of organic co-solvents.\udThe Rhu1PATm potentiality in organic synthesis has been explored focusing on i) the reaction stereocontrol, ii) the possibility of combining it with other mesophilic enzymes in multienzyme systems and iii) its application to the synthesis of imino- and nitrocyclitols.\udIn our study, Rhu1PATm diastereoselectivity was similar to the one reported by Rhu1PA from Escherichia coli (Rhu1PAEc).\udHowever, we observed significant differences for some aldehyde acceptors. Indeed, the diastereoselectivity control was not complete, since mixtures of L-threo (2R,3S; natural stereopreference) and D-erythro (2R,3R) diastereoisomers were obtained as described for Rhu1PAEc. Rhu1PATm was able to catalyse aldol reactions using nitroaldehydes and N-Cbz-aminoaldehydes. Conversion of the selected nitroaldehydes was complete, leading to mixtures of L-threo and D-erythro diastereoisomers, in 95:5 and 75:25 ratios. When N-Cbz-aminoaldehydes were used, aldol reaction yields were lower and the stereoselectivity L-threo:D-erythro ranged between 32:68 to >95:5.
机译:最近已经克隆和鉴定了来自滨海嗜热菌的鼠李糖-1-磷酸鼠李糖醛缩酶(Rhu1PATm)。这种超嗜热酶为实际催化提供了有趣的可能性。这是由于其在极端反应条件下(例如高温或有机助溶剂的存在)下的高稳定性。\ ud已研究了有机合成中的Rhu1PATm潜力,重点在于i)反应立体控制,ii)结合使用\ ud在我们的研究中,Rhu1PATm非对映选择性类似于大肠杆菌Rhu1PA报道的非对映选择性(Rhu1PAEc)。\ ud但是,我们观察到了显着差异一些醛受体。实际上,非对映选择性控制还不完全,因为如关于Rhu1PAEc所述,获得了L-苏式(2R,3S;自然立体偏好)和D-赤型(2R,3R)非对映异构体的混合物。 Rhu1PATm能够使用硝基醛和N-Cbz-氨基醛催化羟醛反应。所选择的硝基醛的转化完成,导致以95:5和75:25的比例形成L-苏式和D-赤型非对映异构体的混合物。当使用N-Cbz-氨基醛时,醛醇缩合反应的产率较低并且立体选择性L-苏式:D-赤型的范围为32:68至> 95:5。

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