6XLX image
Entry Detail
PDB ID:
6XLX
Title:
Crystal structure of cancer-associated G301D mutant of U2AF65 bound to AdML splice site
Biological Source:
Host Organism:
PDB Version:
Deposition Date:
2020-06-29
Release Date:
2020-10-07
Method Details:
Experimental Method:
Resolution:
1.70 Å
R-Value Free:
0.19
R-Value Work:
0.16
R-Value Observed:
0.16
Space Group:
P 21 21 21
Macromolecular Entities
Polymer Type:polypeptide(L)
Description:Splicing factor U2AF 65 kDa subunit
Mutations:G301D
Chain IDs:A
Chain Length:204
Number of Molecules:1
Biological Source:Homo sapiens
Polymer Type:polyribonucleotide
Description:DNA/RNA (5'-R(P*UP*UP*(UD)P*UP*U)-D(P*(BRU))-R(P*CP*C)-3')
Chain IDs:B
Chain Length:8
Number of Molecules:1
Biological Source:synthetic construct
Primary Citation
Representative cancer-associated U2AF2 mutations alter RNA interactions and splicing.
J.Biol.Chem. 295 17148 17157 (2020)
PMID: 33020180 DOI: 10.1074/jbc.RA120.015339

Abstact

High-throughput sequencing of hematologic malignancies and other cancers has revealed recurrent mis-sense mutations of genes encoding pre-mRNA splicing factors. The essential splicing factor U2AF2 recognizes a polypyrimidine-tract splice-site signal and initiates spliceosome assembly. Here, we investigate representative, acquired U2AF2 mutations, namely N196K or G301D amino acid substitutions associated with leukemia or solid tumors, respectively. We determined crystal structures of the wild-type (WT) compared with N196K- or G301D-substituted U2AF2 proteins, each bound to a prototypical AdML polypyrimidine tract, at 1.5, 1.4, or 1.7 Å resolutions. The N196K residue appears to stabilize the open conformation of U2AF2 with an inter-RNA recognition motif hydrogen bond, in agreement with an increased apparent RNA-binding affinity of the N196K-substituted protein. The G301D residue remains in a similar position as the WT residue, where unfavorable proximity to the RNA phosphodiester could explain the decreased RNA-binding affinity of the G301D-substituted protein. We found that expression of the G301D-substituted U2AF2 protein reduces splicing of a minigene transcript carrying prototypical splice sites. We further show that expression of either N196K- or G301D-substituted U2AF2 can subtly alter splicing of representative endogenous transcripts, despite the presence of endogenous, WT U2AF2 such as would be present in cancer cells. Altogether, our results demonstrate that acquired U2AF2 mutations such as N196K and G301D are capable of dysregulating gene expression for neoplastic transformation.

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