| Literature DB >> 25394919 |
Jing Lu1, Yanling Gu1, Jianrong Feng1, Weihong Zhou2, Xue Yang3, Yuequan Shen4.
Abstract
The key step in meiosis is synaptonemal complex formation, which mediates homologous chromosome alignment and synapsis. False pairing between homologous chromosomes produces infertility. Here, we present a crystal structure of the mouse meiosis-specific protein SYCE3, which is a component of the synaptonemal complex central element. Our studies show that functional SYCE3 most likely forms a dimer or higher order oligomer in cells. Furthermore, we demonstrate that the SYCE3 N-helix interacts with the SYCE1 C-helix, which is another central element component. Our results suggest that helical packing may mediate intra- or inter-association of each central element protein component, thereby playing an essential role in forming the synaptonemal complex central elements.Entities:
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Year: 2014 PMID: 25394919 PMCID: PMC4231325 DOI: 10.1038/srep07059
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1SYCE3 crystal structure.
(A) A cartoon representation of the SYCE3 molecular structure. (B) A cartoon representation of the SYCE3 dimer structure. The two SYCE3 molecules are shown in yellow and green. The dotted lines represent the region that was not resolved in this structure. (C) A multiple sequence alignment for full-length SYCE3 among various mammals. The SYCE3 primary sequence is highly conserved among mammals.
Figure 2SYCE3 dimeric packing.
(A) Detailed interactions between two SYCE3 molecules in the SYCE3 dimer. The residues involved in dimer packing are boxed. The relevant amino acid residues are numbered, and the hydrogen bonds are shown as red dashed lines. (B) An analytical ultracentrifugation sedimentation velocity analysis of the purified SYCE3 protein. The calculated molecular weight is 20.5 kDa. (C) Co-immunoprecipitation assays for SYCE3 homodimerization. COS-7 cells were transfected with EGFP-SYCE3 and SYCE3-8 × Myc. The resulting complexes were analyzed using SDS-PAGE and Western blotting. (D) A cross-linking experiment for the purified SYCE3 protein. The final concentration (0.5 mM and 2 mM) of DSG in the reaction mixture is indicated. Full-length blots/gels are presented in Supplementary Figure 1.
Figure 3Interactions between SYCE3 and SYCE1.
(A) COS-7 cells were transfected with Myc-SYCE1 and the respective full-length SYCE3, SYCE3 N-helix, and SYCE3 C-helix EGFP fusion constructs. Myc-SYCE1 can bind the full-length SYCE3 and SYCE3 N-helix. The SYCE3 C-helix does not bind SYCE1. (B) COS-7 cells were transfected with EGFP-SYCE3 and the respective Myc fusion constructs composed of full-length SYCE1 and SYCE1 without C-helix. The results show that SYCE1 without the C-helix does not bind SYCE3. Full-length blots/gels are presented in Supplementary Figure 1.
Data collection and refinement statistics
| Crystal name | Wild-type | Se-Met-crystal |
|---|---|---|
| Space group | ||
| Unit cell (Å) | ||
| Wavelength (Å) | 0.9796 | 0.9796 |
| Resolution range (Å) | 50–1.90 (1.93–1.90) | 50–2.04 (2.11–2.04) |
| No. of unique reflections | 8,742 | 7,272 |
| Redundancy | 3.9(2.8) | 3.7(3.7) |
| 5.9(48.6) | 11.7(60.2) | |
| 22.0(1.8) | 37.2(4.2) | |
| Completeness (%) | 97.1(81.9) | 99.3(99.6) |
| --- | 0.445 | |
| Refinement | ||
| Resolution range (Å) | 23.66 ~ 1.90 | |
| 21.47 | ||
| 23.45 | ||
| RMSDbond (Å) | 0.007 | |
| RMSDangle(°) | 0.874 | |
| Number of | ||
| Protein atoms | 1173 | |
| Solvent atoms | 70 | |
| Residues in (%) | ||
| most favored | 99.2 | |
| additional allowed | 0.8 | |
| Generously allowed | 0 | |
| disallowed | 0 | |
| Average B factor (Å2) of | ||
| Chain A | 45.061 | |
| Chain B | 45.154 | |
| Solvent | 54.790 |
athe highest resolution shell.
b.
c.
dfree, calculated the same as crystal, but from a test set containing 5% of data excluded from the refinement calculation.