Joyce G F, Visser G M, van Boeckel C A, van Boom J H, Orgel L E, van Westrenen J
Nature. 1984;310(5978):602-4. doi: 10.1038/310602a0.
Theories of the origin of optical asymmetry in living systems place fundamental importance on the amplification of optical asymmetry by an autocatalytic process. The replication of a polynucleotide is one obvious choice for such an autocatalytic growth mechanism. If an optically homogeneous polynucleotide could replicate by directing the polymerization of monomers of the same handedness, while excluding monomers of the opposite handedness, its chiral descendants would come to dominate what was once an achiral environment. Recently, two highly efficient template-directed reaction systems have been developed for the oligomerization of activated guanosine mononucleotides (Fig. 1) on a poly(C) template. The synthesis of L-guanosine 5'-mononucleotide makes it possible to study chiral selection in these systems. We report here that poly(C)-directed oligomerization of activated guanosine mononucleotides proceeds readily if the monomers are of the same optical handedness as the template, and is indeed far less efficient if the monomers are of the opposite handedness. However, in template-directed reactions with a racemic mixture, monomers of the opposite handedness to the template are incorporated as chain terminators at the 2'(3') end of the products. This inhibition raises an important problem for many theories of the origin of life.
生命系统中光学不对称起源的理论认为,通过自催化过程放大光学不对称具有根本重要性。多核苷酸的复制是这种自催化生长机制的一个明显选择。如果一种光学上均一的多核苷酸能够通过引导相同手性的单体聚合来进行复制,同时排除相反手性的单体,那么它的手性后代将逐渐在曾经是非手性的环境中占据主导地位。最近,已经开发出两种高效的模板导向反应系统,用于在聚(C)模板上使活化的鸟苷单核苷酸寡聚化(图1)。L - 鸟苷5'-单核苷酸的合成使得研究这些系统中的手性选择成为可能。我们在此报告,如果单体与模板具有相同的光学手性,活化的鸟苷单核苷酸的聚(C)导向寡聚化很容易进行,而如果单体与模板具有相反的手性,则效率要低得多。然而,在与外消旋混合物的模板导向反应中,与模板具有相反手性的单体作为链终止剂掺入产物的2'(3')末端。这种抑制作用给许多生命起源理论提出了一个重要问题。