Weissbuch Isabelle, Bolbach Gerard, Leiserowitz Leslie, Lahav Meir
Department of Materials and Interfaces, The Weizmann Institute of Science, 76100-Rehovot, Israel.
Orig Life Evol Biosph. 2004 Feb;34(1-2):79-92. doi: 10.1023/b:orig.0000009830.40297.fe.
A possible role that might have been played by ordered clusters at the air/water interface for the generation of homochiral oligopeptides under prebiotic conditions has been probed by a catalyzed polymerization of amphiphilic activated alpha-amino acids that assembled as two-dimensional (2-D) crystallites at this interface. Three type of processes are described: (i) polymerization of racemates of activated alpha-amino acids that undergo spontaneous resolution into enantiomorphous 2-D crystallites to yield racemic mixtures of oligopeptides enriched with the oligomers of homochiral sequence, (ii) enhanced formation of racemic mixtures of homochiral oligopeptides via lattice-controlled polymerization within 2-D racemic compounds and (iii) generation of homochiral oligopeptides of a single handedness from chiral non-racemic mixtures of monomers that self-assemble into two different phases, racemic crystallites composed from both enantiomers and enantiomorphous crystallites of the enantiomer in excess. The structures of the 2-D crystallites have been determined by grazing incidence X-ray diffraction and the diastereoisomeric composition of the oligopeptides by matrix-assisted laser-desorption time-of-flight mass spectrometry with enantio-labeling.
通过两亲性活化α-氨基酸在空气/水界面处组装成二维(2-D)微晶的催化聚合反应,探究了在益生元条件下空气/水界面处的有序簇可能对同手性寡肽生成所起的作用。描述了三种类型的过程:(i)活化α-氨基酸外消旋体的聚合反应,这些外消旋体自发拆分成对映体二维微晶,从而产生富含同手性序列寡聚物的寡肽外消旋混合物;(ii)通过二维外消旋化合物内的晶格控制聚合反应增强同手性寡肽外消旋混合物的形成;(iii)从手性非外消旋单体混合物中生成单一手性的同手性寡肽,这些单体自组装成两个不同相,即由两种对映体组成的外消旋微晶和过量对映体的对映体微晶。二维微晶的结构通过掠入射X射线衍射确定,寡肽的非对映异构体组成通过带有对映体标记的基质辅助激光解吸飞行时间质谱法确定。