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首页> 外文期刊>Bioorganic and medicinal chemistry >Reversal of optical induction in transamination by regioisomeric bifunctionalized cyclodextrins.
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Reversal of optical induction in transamination by regioisomeric bifunctionalized cyclodextrins.

机译:通过区域异构体双官能化环糊精逆转氨基转移中的光诱导。

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摘要

Two isomeric compounds have been synthesized carrying a pyridoxamine on C-6 of beta-cyclodextrin and an imidazole unit on C-6 of the neighboring glucose residue. Each one stereoselectively transaminates phenylpyruvic acid to produce phenylalanine, and with opposite stereochemical preferences. Structure determinations by X-ray crystallography and NMR spectroscopy indicate that the imidazole units serve to block proton addition from their side, rather than acting to protonate the transamination intermediates. Related cyclodextrin-pyridoxamine compounds had been reported carrying ethylenediamine units instead of imidazoles, and high enantioselectivities in transamination were claimed. Our work indicates that these claims are incorrect, and that only poor selectivities are seen that are often unrelated to the position of the ethylenediamine units. Neither of these transaminating systems yet approaches the enantioselectivity seen with a pyridoxamine carrying a chirally mounted internal base group.
机译:已经合成了两种异构化合物,它们在β-环糊精的C-6上带有吡ido胺,在相邻葡萄糖残基的C-6上带有咪唑单元。每个立体选择性地氨基苯丙酮酸转氨生成苯丙氨酸,并且具有相反的立体化学偏好。通过X射线晶体学和NMR光谱的结构确定表明,咪唑单元起从其侧面阻止质子加成的作用,而不是起质子化转氨中间体的作用。据报道,相关的环糊精-吡啶氧胺化合物带有乙二胺单元而不是咪唑,并要求在转氨反应中具有高对映选择性。我们的工作表明这些说法是不正确的,只能看到选择性差,通常与乙二胺单元的位置无关。这些氨基转移体系都没有达到带有手性安装的内部基团的吡ido胺所看到的对映选择性。

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