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Structure and assembly of an augmented Sm-like archaeal protein 14-mer.

机译:增强的Sm样古细菌蛋白14-mer的结构和组装。

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To better understand the roles of Sm proteins in forming the cores of many RNA-processing ribonucleoproteins, we determined the crystal structure of an atypical Sm-like archaeal protein (SmAP3) in which the conserved Sm domain is augmented by a previously uncharacterized, mixed alpha/beta C-terminal domain. The structure reveals an unexpected SmAP3 14-mer that is perforated by a cylindrical pore and is bound to 14 cadmium (Cd(2+)) ions. Individual heptamers adopt either "apical" or "equatorial" conformations that chelate Cd(2+) differently. SmAP3 forms supraheptameric oligomers (SmAP3)(n = 7,14,28) in solution, and assembly of the asymmetric 14-mer is modulated by differential divalent cation-binding in apical and equatorial subunits. Phylogenetic and sequence analyses substantiate SmAP3s as a unique subset of SmAPs. These results distinguish SmAP3s from other Sm proteins and provide a model for the structure and properties of Sm proteins >100 residues in length, e.g., several human Sm proteins.
机译:为了更好地理解Sm蛋白在形成许多RNA处理核糖核蛋白核心中的作用,我们确定了一种非典型Sm样古细菌蛋白(SmAP3)的晶体结构,其中保守的Sm结构域被以前未表征的混合α增强/ beta C末端域。该结构揭示了一个意外的SmAP3 14-mer,它被一个圆柱形孔穿孔并与14个镉(Cd(2+))离子结合。个别七聚体采用“顶”构型或“赤道”构型以不同方式螯合Cd(2+)。 SmAP3在溶液中形成超七聚体低聚物(SmAP3)(n = 7,14,28),不对称14-mer的组装受顶端和赤道亚基中差分二价阳离子结合的调节。系统发育和序列分析证实SmAP3是SmAP的唯一子集。这些结果将SmAP3与其他Sm蛋白区分开,并为长度大于100个残基的Sm蛋白(例如几种人Sm蛋白)的结构和性质提供了模型。

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