Department of Biology and Biochemistry, University of Houston, Houston, TX, USA.
Biopolymers. 2012 Aug;97(8):617-28. doi: 10.1002/bip.22049.
The structures of four small RNAs each containing a different version of the UNAC loop were determined in solution using NMR spectroscopy and restrained molecular dynamics. The UMAC tetraloops (where M is A or C) exhibited a typical GNRA fold including at least one hydrogen bond between the first U and fourth C. In contrast, UGAC and UUAC tetraloops have a different orientation of the first and fourth residues, such that they do not closely mimic the GNRA fold. Although the UMAC tetraloops are excellent structural mimics of the GNRA tetraloop backbone, sequence comparisons typically do not reveal co-variation between the two loop types. The limited covariation is attributed to differences in the location of potential hydrogen bond donors and acceptors as a result of the replacement of the terminal A of GNRA with C in the UMAC version. Thus, UMAC loops do not readily form the common GNRA tetraloop-receptor interaction. The loop at positions 863-866 in E. coli 16S ribosomal RNA appears to be a major exception. However, in this case the GNRA loop does not in fact engage in the usual base to backbone tertiary interactions. In summary, UMAC loops are not just an alternative sequence version of the GNRA loop family, but instead they expand the types of interactions, or lack thereof, that are possible. From a synthetic biology perspective their inclusion in an artificial RNA may allow the establishment of a stable loop structure while minimizing unwanted long range interactions or permitting alternative long-range interactions. © 2012 Wiley Periodicals, Inc. Biopolymers 97: 617-628, 2012.
四种分别含有不同 UNAC 环版本的小 RNA 结构在溶液中通过 NMR 光谱和约束分子动力学确定。UMAC 四肽环(其中 M 为 A 或 C)表现出典型的 GNRA 折叠,包括第一个 U 和第四个 C 之间至少一个氢键。相比之下,UGAC 和 UUAC 四肽环具有第一个和第四个残基的不同取向,因此它们不能紧密模拟 GNRA 折叠。尽管 UMAC 四肽环是 GNRA 四肽环骨架的极佳结构模拟物,但序列比较通常不能揭示两种环类型之间的共变。这种有限的共变归因于由于 GNRA 版本的末端 A 被 C 取代,潜在氢键供体和受体的位置差异。因此,UMAC 环不易形成常见的 GNRA 四肽环-受体相互作用。大肠杆菌 16S rRNA 中位置 863-866 的环似乎是一个主要的例外。然而,在这种情况下,GNRA 环实际上并没有参与通常的碱基到骨架三级相互作用。总之,UMAC 环不仅仅是 GNRA 环家族的替代序列版本,而是扩展了可能存在的相互作用类型,或者缺乏相互作用。从合成生物学的角度来看,它们在人工 RNA 中的包含可以在最小化不需要的远程相互作用或允许替代远程相互作用的同时,允许建立稳定的环结构。2012 Wiley Periodicals, Inc. Biopolymers 97: 617-628, 2012。