Tamura Koji, Schimmel Paul R
The Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.
Proc Natl Acad Sci U S A. 2006 Sep 12;103(37):13750-2. doi: 10.1073/pnas.0606070103. Epub 2006 Sep 1.
Aminoacylation of RNA minihelices is speculated to be a key step in the transition from the putative RNA world to the theater of proteins. This reaction affords the opportunity to make chiral selection of an l- or d-amino acid and thus determine the ultimate chirality that is incorporated into proteins. Previous work showed chiral preference of aminoacylation with a nonprotein, nonribozyme, RNA-directed aminoacylation system. This preference was, in turn, determined by the preexisting chirality of the RNA. The alpha-amino group attached to the asymmetric alpha-carbon of the amino acid was an obvious candidate to play a role in chiral selectivity through interactions with the RNA. Also not clear was whether a simple manipulation could change the chiral selectivity, thereby giving insight into the basis of chiral selection in the first place. Here we show, surprisingly, no role for the free alpha-amino group in chiral selection. However, by a sequence manipulation, chiral preference was suppressed and partly reversed. This result and those with further RNA constructs support the idea that the chiral preference for an l-amino acid in these constructs depends on avoiding a sugar-pucker-sensitive steric clash between a pendant group of a base with the amino acid side chain.
RNA小螺旋的氨酰化被推测是从假定的RNA世界向蛋白质领域转变的关键步骤。该反应为手性选择l-或d-氨基酸提供了机会,从而决定了最终掺入蛋白质的手性。先前的工作表明,在一个非蛋白质、非核酶的RNA导向氨酰化系统中,氨酰化存在手性偏好。反过来,这种偏好又由RNA预先存在的手性所决定。连接在氨基酸不对称α-碳上的α-氨基显然是一个通过与RNA相互作用在手性选择性中发挥作用的候选者。同样不清楚的是,简单的操作是否能改变手性选择性,从而首先深入了解手性选择的基础。在这里,我们令人惊讶地发现,游离的α-氨基在手性选择中不起作用。然而,通过序列操作,手性偏好被抑制并部分逆转。这一结果以及进一步RNA构建体的结果支持了这样一种观点,即这些构建体中对l-氨基酸的手性偏好取决于避免碱基侧链基团与氨基酸侧链之间的糖环构象敏感的空间冲突。