Anticodon-like loop-mediated dimerization in the crystal structures of HdV- like CPEB3 ribozymes
Przytula-Mally, I.; Engilberge, S.; Johannsen, S.; Olieric, V.; Masquida, B.; Sigel, R. K. O.
Show abstract
Cytoplasmic polyadenylation element-binding (CPEB) proteins are involved in many cellular processes, including cell division, synaptic plasticity, learning, and memory. A highly conserved, short mammalian ribozyme has been found within the second intron of the CPEB3 gene. Based on its cleavage mechanism and structural features, this ribozyme belongs to the hepatitis delta virus (HDV)-like ribozyme family. Here, we present the first crystallographic structures of human and chimpanzee CPEB3 ribozymes, both confirming the general topology of the HDV ribozyme with two parallel coaxial helical stacks. However, the residues involved in forming the P1.1 mini-helix, which is an integral part of the characteristic nested double pseudoknot involving P1, P2, and P3, instead participate in a seven nucleotides loop with a conformation similar to the one from the anticodon (AC) loop of tRNAs when interacting with the mRNA codon. The conformation of the loop supports the formation of a four-base pair helix by interacting with the AC-like loop from a symmetry-related ribozyme leading to ribozyme dimer formation. The present crystal structures link for the first time the sequence specificities of the CPEB3 and the HDV (genomic and antigenomic) ribozymes to their different structural features. This work corroborates the hypothesis made by Szostak that HDV ribozymes may have evolved from the CPEB3 ribozyme.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Different tertiary interactions create the same important 3-D features in a divergent flavivirus xrRNA 96%
- Structural and mechanistic insights into Dis3L2 mediated degradation of structured RNA 96%
- Abolished frameshifting for predicted structure-stabilizing SARS-CoV-2 mutants: Implications to alternative conformations and their statistical structural analyses 95%
Similar papers in this journal
- RNA sequence to structure analysis from comprehensive pairwise mutagenesis of multiple self-cleaving ribozymes 95%
- Structures of topoisomerase V in complex with DNA reveal unusual DNA binding mode and novel relaxation mechanism 95%
- Structural basis of transcription inhibition by the DNA mimic protein Ocr of bacteriophage T7 93%
Similar papers in this journal
Similar papers in this journal
- Thrombospondin module 1 domain (TSP1) of the matricellular protein CCN3 shows an atypical disulfide pattern and incomplete CWR layers 91%
- Structural Analysis of the PATZ1 BTB domain homodimer 91%
- The LH-DH module of the bacterial replicative helicases is the common binding site for DciA and other helicase loaders 90%
Similar papers in this journal
- Cis-nonPro Peptides: Genuine Occurrences and their Functional Roles 92%
- Structure of the Disulfide-rich Modules of a Striking Tandem Repeat Protein, Avian Cysteine-Rich Eggshell Membrane Protein 92%
- Solution structure of the Z0 domain from transcription repressor BCL11A sheds light on the sequence properties of protein-binding zinc-fingers 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.