5g4u
From Proteopedia
Association of three two-k-turn units based on Kt-7 3bU,3nU, forming a triangular-shaped structure
Structural highlights
FunctionRL7A_ARCFU Multifunctional RNA-binding protein that recognizes the K-turn motif in ribosomal RNA, box H/ACA and box C/D sRNAs.[1] Publication Abstract from PubMedk-Turns are widespread RNA architectural elements that mediate tertiary interactions. We describe a double-kink-turn motif comprising two inverted k-turns that forms a tight horse-shoe structure that can assemble into a variety of shapes by coaxial association of helical ends. Using X-ray crystallography we show that these assemble with two (dumbell), three (triangle) and four units (square), with or without bound protein, within the crystal lattice. In addition, exchange of a single basepair can almost double the pore radius or shape of a molecular assembly. On the basis of this analysis we synthesized a 114 nt self-complementary RNA containing six k-turns. The crystal structure of this species shows that it forms a quasi-cyclic triangular object. These are randomly disposed about the three-fold axis in the crystal lattice, generating a circular RNA of quasi D3 symmetry with a shape reminiscent of that of a cyclohexane molecule in its chair conformation. This work demonstrates that the k-turn is a powerful building block in the construction of nano-scale molecular objects, and illustrates why k-turns are widely used in natural RNA molecules to organize long-range architecture and mediate tertiary contacts. A quasi-cyclic RNA nano-scale molecular object constructed using kink turns.,Huang L, Lilley DM Nanoscale. 2016 Aug 18;8(33):15189-95. doi: 10.1039/c6nr05186c. PMID:27506301[2] From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine. References
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