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Analysis of Spliceosomal snRNA Localization in Human Hela Cells Using Microinjection
Published on: August 6, 2019
Structure of the pre-mRNA leakage 39-kDa protein reveals a single domain of integrated zf-C3HC and Rsm1 modules
Hideharu Hashimoto1, Daniel H Ramirez2, Ophélie Lautier3
1Department of Biochemistry and Molecular Biology, Thomas Jefferson University, Philadelphia, PA, 19107, USA.
Abstract:
In Saccharomyces cerevisiae, the pre-mRNA leakage 39-kDa protein (ScPml39) was reported to retain unspliced pre-mRNA prior to export through nuclear pore complexes (NPCs). Pml39 homologs outside the Saccharomycetaceae family are currently unknown, and mechanistic insight into Pml39 function is lacking. Here we determined the crystal structure of ScPml39 at 2.5 Å resolution to facilitate the discovery of orthologs beyond Saccharomycetaceae, e.g. in Schizosaccharomyces pombe or human. The crystal structure revealed integrated zf-C3HC and Rsm1 modules, which are tightly associated through a hydrophobic interface to form a single domain. Both zf-C3HC and Rsm1 modules belong to the Zn-containing BIR (Baculovirus IAP repeat)-like super family, with key residues of the canonical BIR domain being conserved. Features unique to the Pml39 modules refer to the spacing between the Zn-coordinating residues, giving rise to a substantially tilted helix αC in the zf-C3HC and Rsm1 modules, and an extra helix αAB' in the Rsm1 module. Conservation of key residues responsible for its distinct features identifies S. pombe Rsm1 and Homo sapiens NIPA/ZC3HC1 as structural orthologs of ScPml39. Based on the recent functional characterization of NIPA/ZC3HC1 as a scaffold protein that stabilizes the nuclear basket of the NPC, our data suggest an analogous function of ScPml39 in S. cerevisiae.
Insights
The crystal structure of Saccharomyces cerevisiae pre-mRNA leakage 39-kDa protein (ScPml39) reveals unique features. This finding aids in identifying orthologs and suggests ScPml39 stabilizes the nuclear pore complex in yeast.
Area of Science:
- Structural biology
- Molecular and cell biology
- Biochemistry
Background:
- Saccharomyces cerevisiae pre-mRNA leakage 39-kDa protein (ScPml39) retains unspliced pre-mRNA before nuclear export.
- The function and homologs of ScPml39 outside Saccharomycetaceae are unknown.
Purpose of the Study:
- Determine the crystal structure of ScPml39 to identify orthologs in other species.
- Elucidate the structural basis for ScPml39 function.
Main Methods:
- X-ray crystallography (2.5 Å resolution) of ScPml39.
- Bioinformatic analysis for ortholog identification.
- Comparative structural analysis.
Main Results:
- The crystal structure reveals integrated zf-C3HC and Rsm1 modules forming a single domain.
- Unique structural features, including altered helix spacing and an additional helix, were identified.
- Schizosaccharomyces pombe Rsm1 and Homo sapiens NIPA/ZC3HC1 were identified as structural orthologs.
Conclusions:
- ScPml39 shares structural homology with known nuclear pore complex proteins.
- The findings suggest ScPml39 functions analogously to NIPA/ZC3HC1, potentially stabilizing the nuclear basket in S. cerevisiae.
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