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两种与质粒复制控制相关的RNA双链体的晶体结构:一种18碱基对双链体,分辨率为1.20埃;另一种19碱基对双链体,分辨率为1.55埃。

Crystal structures of two plasmid copy control related RNA duplexes: An 18 base pair duplex at 1.20 A resolution and a 19 base pair duplex at 1.55 A resolution.

作者信息

Klosterman P S, Shah S A, Steitz T A

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, 266 Whitney Avenue, New Haven, Connecticut 06520-8114, USA.

出版信息

Biochemistry. 1999 Nov 9;38(45):14784-92. doi: 10.1021/bi9912793.

Abstract

The structures of two RNA duplexes, whose sequences correspond to portions of the ColE1 plasmid copy control RNA I and RNA II, have been determined. Crystals containing the 18mers 5'-CA CCGUUGGUAGCGGUGC-3' and 5'-CACCGCUACCAACGGUGC-3' diffract to 1.20 A resolution while those containing the 19mers 5'-GCACCGUUGGUAGCGGUGC-3' and 5'-GCACCGCUACCAACGGUGC-3' diffract to 1.55 A resolution. Both duplexes are standard A form, with Watson-Crick base pairing throughout. Use of anisotropic atomic displacement factors in refinement of the 1.20 A structure dramatically improved refinement statistics, resulting in a final R(free) of 15.0% and a crystallographic R-factor of 11.6%. Perhaps surprisingly, these crystals of the 18 base pair RNA exhibit a 36-fold static disorder, resulting in a structure with a single sugar-phosphate backbone conformation and an averaged base composition at each residue. Since the sugar-phosphate backbone structure is identical in the 36 different nucleotides that are superimposed, there can be no sequence-dependent variation in the structure. The average ribose pucker amplitude is 45.8 degrees for the 18 base pair structure and 46.4 degrees for the 19 base pair structure; these values are respectively 19% and 20% larger than the average pucker amplitude reported from nucleoside crystal structures. A standard RNA water structure, based on analysis of the hydration of these crystal structures and that of the TAR RNA stem [Ippolito, J. A., and Steitz, T. A. (1998) Proc. Natl. Acad. Sci. U.S.A. 95, 9819-9824], has been derived, which has allowed us to predict water positions in lower resolution RNA crystal structures. We report a new RNA packing motif, in which three pro-S(p) phosphate oxygens interact with an ammonium ion.

摘要

已确定了两个RNA双链体的结构,其序列对应于ColE1质粒复制控制RNA I和RNA II的部分序列。含有18聚体5'-CA CCGUUGGUAGCGGUGC-3'和5'-CACCGCUACCAACGGUGC-3'的晶体衍射分辨率为1.20 Å,而含有19聚体5'-GCACCGUUGGUAGCGGUGC-3'和5'-GCACCGCUACCAACGGUGC-3'的晶体衍射分辨率为1.55 Å。两个双链体均为标准A型,整个结构中均存在沃森-克里克碱基对。在1.20 Å结构的精修中使用各向异性原子位移因子显著改善了精修统计数据,最终的R(自由)为15.0%,晶体学R因子为11.6%。也许令人惊讶的是,这些18碱基对RNA的晶体表现出36倍的静态无序,导致结构具有单一的糖-磷酸主链构象以及每个残基处的平均碱基组成。由于在叠加的36个不同核苷酸中糖-磷酸主链结构相同,因此结构中不存在序列依赖性变化。18碱基对结构的平均核糖皱折幅度为45.8度,19碱基对结构为46.4度;这些值分别比核苷晶体结构报道的平均皱折幅度大19%和20%。基于对这些晶体结构以及TAR RNA茎的水合作用分析[Ippolito, J. A., and Steitz, T. A. (1998) Proc. Natl. Acad. Sci. U.S.A. 95, 9819-9824],推导得出了一种标准RNA水结构,这使我们能够预测低分辨率RNA晶体结构中的水位置。我们报道了一种新的RNA堆积基序,其中三个前-S(p)磷酸氧与一个铵离子相互作用。

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