Pizzarello Sandra, Huang Yongsong, Alexandre Marcelo R
Department of Chemistry and Biochemistry, Arizona State University, Tempe, AZ 85018-1604, USA.
Proc Natl Acad Sci U S A. 2008 Mar 11;105(10):3700-4. doi: 10.1073/pnas.0709909105. Epub 2008 Feb 29.
The nonracemic amino acids of meteorites provide the only natural example of molecular asymmetry measured so far outside the biosphere. Because extant life depends on chiral homogeneity for the structure and function of biopolymers, the study of these meteoritic compounds may offer insights into the establishment of prebiotic attributes in chemical evolution as well as the origin of terrestrial homochirality. However, all efforts to understand the origin, distribution, and scope of these amino acids' enantiomeric excesses (ee) have been frustrated by the ready exposure of meteorites to terrestrial contaminants and the ubiquitous homochirality of such contamination. We have analyzed the soluble organic composition of a carbonaceous meteorite from Antarctica that was collected and stored under controlled conditions, largely escaped terrestrial contamination and offers an exceptionally pristine sample of prebiotic material. Analyses of the meteorite diastereomeric amino acids alloisoleucine and isoleucine allowed us to show that their likely precursor molecules, the aldehydes, also carried a sizable molecular asymmetry of up to 14% in the asteroidal parent body. Aldehydes are widespread and abundant interstellar molecules; that they came to be present, survived, and evolved in the solar system carrying ee gives support to the idea that biomolecular traits such as chiral asymmetry could have been seeded in abiotic chemistry ahead of life.
陨石中的非外消旋氨基酸是迄今为止在生物圈之外测得的分子不对称性的唯一自然实例。由于现存生命依赖生物聚合物的结构和功能的手性同质性,对这些陨石化合物的研究可能有助于深入了解化学进化中益生元属性的建立以及地球同手性的起源。然而,由于陨石容易暴露于地球污染物中,且这种污染普遍存在手性同质性,所有试图了解这些氨基酸对映体过量(ee)的起源、分布和范围的努力都受到了阻碍。我们分析了一块来自南极洲的碳质陨石的可溶性有机成分,该陨石是在受控条件下收集和储存的,基本未受地球污染,提供了一个极为原始的益生元物质样本。对陨石非对映体氨基酸别异亮氨酸和异亮氨酸的分析使我们能够表明,它们可能的前体分子醛类,在小行星母体中也具有高达14%的可观分子不对称性。醛类是广泛且丰富的星际分子;它们在太阳系中存在、存活并进化,携带着对映体过量,这支持了手性不对称等生物分子特征可能在生命出现之前就已在非生物化学中播下种子的观点。