Abstract

The Y-box binding protein 1 (YB-1) is a member of the cold shock domain (CSD) protein family and is recognized as an oncogenic factor in several solid tumors. By binding to RNA, YB-1 participates in several steps of posttranscriptional regulation of gene expression, including mRNA splicing, stability, and translation; microRNA processing; and stress granule assembly. However, the mechanisms in YB-1-mediated regulation of RNAs are unclear. Previously, we used both systematic evolution of ligands by exponential enrichment (SELEX) and individual-nucleotide resolution UV cross-linking and immunoprecipitation coupled RNA-Seq (iCLIP-Seq) analyses, which defined the RNA-binding consensus sequence of YB-1 as CA(U/C)C. We also reported that through binding to its core motif CAUC in primary transcripts, YB-1 regulates the alternative splicing of a CD44 variable exon and the biogenesis of miR-29b-2 during both Drosha and Dicer steps. To elucidate the molecular basis of the YB-1-RNA interactions, we report high-resolution crystal structures of the YB-1 CSD in complex with different RNA oligos at 1.7 Å resolution. The structure revealed that CSD interacts with RNA mainly through π-π stacking interactions assembled by four highly conserved aromatic residues. Interestingly, YB-1 CSD forms a homodimer in solution, and we observed that two residues, Tyr-99 and Asp-105, at the dimer interface are important for YB-1 CSD dimerization. Substituting these two residues with Ala reduced CSD's RNA-binding activity and abrogated the splicing activation of YB-1 targets. The YB-1 CSD-RNA structures presented here at atomic resolution provide mechanistic insights into gene expression regulated by CSD-containing proteins.

Highlights

  • The Y-box binding protein 1 (YB-1) is a member of the cold shock domain (CSD) protein family and is recognized as an oncogenic factor in several solid tumors

  • We showed that YB-1 binds to a CA(U/C)C consensus sequence using the systematic evolution of ligands by exponential enrichment (SELEX) method [37]

  • We determined the crystal structures of YB-1 CSD in complex with its core binding motif CAUC or several mutant RNA oligos at atomic resolution

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Summary

To whom correspondence may be addressed

We showed that YB-1 is up-regulated in glioblastoma and promotes cell proliferation by blocking the processing of miR-29b-2 via specific binding to the CAUC motif in the terminal loop region of pri-/premiR-29b-2 [38]. These results demonstrate that the specific recognition of the YB-1– binding motif is crucial for its function. To provide the structural basis for YB-1–RNA interactions, in this study, we resolved the high-resolution crystal structures of YB-1 CSD in complex with RNA-binding consensus sequence defined previously by using SELEX method [37]. Our findings provide structural details and novel features of YB-1– RNA interactions

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