Institute of Biotechnology, RWTH Aachen University Worringer Weg 3, D-52074 Aachen, Germany.
Chem Commun (Camb). 2019 May 7;55(38):5431-5434. doi: 10.1039/c9cc00154a.
Downstream processing to obtain enantiopure compounds from a racemic mixture relies mainly on crystallization. Natural transporters can specifically translocate enantiomers through membranes. Here a β-barrel transmembrane protein FhuA is re-engineered into a chiral channel protein (FhuAF4) to resolve racemic mixtures of d-/l-arginine. The engineered FhuAF4 variant exhibits an enantioselectivity (E-value) of 1.92 and an enantiomeric excess percentage (ee%) of 23.91 at 52.39% conversion. OmniChange mutant libraries at the computationally identified "filter-regions" likely help to identify FhuA variants for enantiomeric separation of other compounds.
下游处理主要依靠结晶从外消旋混合物中获得对映纯化合物。天然转运蛋白可以通过膜特异性转运对映体。在此,β-桶跨膜蛋白 FhuA 被重新设计成手性通道蛋白(FhuAF4),以拆分 d-/l-精氨酸的外消旋混合物。工程化的 FhuAF4 变体在 52.39%转化率下表现出 1.92 的对映选择性(E 值)和 23.91%的对映体过量百分比(ee%)。在计算确定的“筛选区域”处的 OmniChange 突变文库可能有助于鉴定 FhuA 变体,以实现其他化合物的对映体分离。