» Articles » PMID: 20647542

The Expression Profile of the Major Mouse SPO11 Isoforms Indicates That SPO11beta Introduces Double Strand Breaks and Suggests That SPO11alpha Has an Additional Role in Prophase in Both Spermatocytes and Oocytes

Overview
Journal Mol Cell Biol
Specialty Cell Biology
Date 2010 Jul 22
PMID 20647542
Citations 56
Authors
Affiliations
Soon will be listed here.
Abstract

Both in mice and humans, two major SPO11 isoforms are generated by alternative splicing: SPO11alpha (exon 2 skipped) and SPO11beta. Thus, the alternative splicing event must have emerged before the mouse and human lineages diverged and was maintained during 90 million years of evolution, arguing for an essential role for both isoforms. Here we demonstrate that developmental regulation of alternative splicing at the Spo11 locus governs the sequential expression of SPO11 isoforms in male meiotic prophase. Protein quantification in juvenile mice and in prophase mutants indicates that early spermatocytes synthesize primarily SPO11beta. Estimation of the number of SPO11 dimers (betabeta/alphabeta/alphaalpha) in mutants in which spermatocytes undergo a normal number of double strand breaks but arrest in midprophase due to inefficient repair argues for a role for SPO11beta-containing dimers in introducing the breaks in leptonema. Expression kinetics in males suggested a role for SPO11alpha in pachytene/diplotene spermatocytes. Nevertheless, we found that both alternative transcripts can be detected in oocytes throughout prophase I, arguing against a male-specific function for this isoform. Altogether, our data support a role for SPO11alpha in mid- to late prophase, presumably acting as a topoisomerase, that would be conserved in male and female meiocytes.

Citing Articles

Reconstitution of SPO11-dependent double-strand break formation.

Zheng Z, Zheng L, Arter M, Liu K, Yamada S, Ontoso D Nature. 2025; .

PMID: 39972129 DOI: 10.1038/s41586-025-08601-2.


Reconstitution of SPO11-dependent double-strand break formation.

Zheng Z, Zheng L, Arter M, Liu K, Yamada S, Ontoso D bioRxiv. 2024; .

PMID: 39605552 PMC: 11601517. DOI: 10.1101/2024.11.20.624382.


BCAS2 and hnRNPH1 orchestrate alternative splicing for DNA double-strand break repair and synapsis in meiotic prophase I.

Sun L, Ye R, Cao C, Lv Z, Wang C, Xie X Cell Mol Life Sci. 2024; 81(1):449.

PMID: 39520542 PMC: 11550311. DOI: 10.1007/s00018-024-05479-7.


The plant early recombinosome: a high security complex to break DNA during meiosis.

Rafiei N, Ronceret A Plant Reprod. 2024; 37(4):421-440.

PMID: 39331138 PMC: 11511760. DOI: 10.1007/s00497-024-00509-7.


Recent advances in mechanisms ensuring the pairing, synapsis and segregation of XY chromosomes in mice and humans.

Lampitto M, Barchi M Cell Mol Life Sci. 2024; 81(1):194.

PMID: 38653846 PMC: 11039559. DOI: 10.1007/s00018-024-05216-0.


References
1.
Bhasin M, Raghava G . ESLpred: SVM-based method for subcellular localization of eukaryotic proteins using dipeptide composition and PSI-BLAST. Nucleic Acids Res. 2004; 32(Web Server issue):W414-9. PMC: 441488. DOI: 10.1093/nar/gkh350. View

2.
Peters A, Plug A, van Vugt M, de Boer P . A drying-down technique for the spreading of mammalian meiocytes from the male and female germline. Chromosome Res. 1997; 5(1):66-8. DOI: 10.1023/a:1018445520117. View

3.
Eaker S, Cobb J, Pyle A, Handel M . Meiotic prophase abnormalities and metaphase cell death in MLH1-deficient mouse spermatocytes: insights into regulation of spermatogenic progress. Dev Biol. 2002; 249(1):85-95. DOI: 10.1006/dbio.2002.0708. View

4.
Pittman D, Cobb J, Schimenti K, Wilson L, Cooper D, Brignull E . Meiotic prophase arrest with failure of chromosome synapsis in mice deficient for Dmc1, a germline-specific RecA homolog. Mol Cell. 1998; 1(5):697-705. DOI: 10.1016/s1097-2765(00)80069-6. View

5.
Sugimoto-Shirasu K, Stacey N, Corsar J, Roberts K, McCann M . DNA topoisomerase VI is essential for endoreduplication in Arabidopsis. Curr Biol. 2002; 12(20):1782-6. DOI: 10.1016/s0960-9822(02)01198-3. View