Summary information and primary citation
- PDB-id
-
8id2;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- RNA binding protein-RNA
- Method
- X-ray (1.8 Å)
- Summary
- Crystal structure of the ubiquitin-like domain in the
sf3a1 subunit of human u2 snrnp complexed with the
stem-loop 4 of u1 snrna
- Reference
-
Nameki N, Terawaki SI, Takizawa M, Kitamura M, Muto Y,
Kuwasako K (2023): "Structural
insights into recognition of SL4, the UUCG stem-loop, of
human U1 snRNA by the ubiquitin-like domain, including
the C-terminal tail in the SF3A1 subunit of U2
snRNP." J.Biochem., 174,
203-216. doi: 10.1093/jb/mvad033.
- Abstract
- The pre-spliceosomal complex involves interactions
between U1 and U2 snRNPs, where a ubiquitin-like domain
(ULD) of SF3A1, a component of U2 snRNP, binds to the
stem-loop 4 (SL4; the UUCG tetraloop) of U1 snRNA in U1
snRNP. Here, we reported the 1.80 Å crystal structure of
human SF3A1 ULD (ULDSF3A1) complexed with SL4. The
structural part of ULDSF3A1 (res. 704-785) adopts a typical
β-grasp fold with a topology of
β1-β2-α1-310a-β3-β4-310b-β5, closely resembling that of
ubiquitin, except for the length and structure of the β1/β2
loop. A patch on the surface formed by three
ULDSF3A1-specific residues, Lys756 (β3), Phe763 (β4), and
Lys765 (following β4), contacts the canonical UUCG
tetraloop structure. In contrast, the directly following
C-terminal tail composed of 786KERGGRKK793 was essentially
stretched. The main or side chains of all the residues
interacted with the major groove of the stem helix; the RGG
residues adopted a peculiar conformation for RNA
recognition. These findings were confirmed by mutational
studies using bio-layer interferometry. Collectively, a
unique combination of the β-grasp fold and the C-terminal
tail constituting ULDSF3A1 is required for the SL4-specific
binding. This interaction mode also suggests that putative
post-translational modifications, including ubiquitination
in ULDSF3A1, directly inhibit SL4 binding.