Literature DB >> 31074776

A segregating human allele of SPO11 modeled in mice disrupts timing and amounts of meiotic recombination, causing oligospermia and a decreased ovarian reserve†.

Tina N Tran1, John C Schimenti1.   

Abstract

A major challenge in medical genetics is to characterize variants of unknown significance (VUS). Doing so would help delineate underlying causes of disease and the design of customized treatments. Infertility has presented an especially difficult challenge with respect to not only determining if a given patient has a genetic basis, but also to identify the causative genetic factor(s). Though genome sequencing can identify candidate variants, in silico predictions of causation are not always sufficiently reliable so as to be actionable. Thus, experimental validation is crucial. Here, we describe the phenotype of mice containing a non-synonymous (proline-to-threonine at position 306) change in Spo11, corresponding to human SNP rs185545661. SPO11 is a topoisomerase-like protein that is essential for meiosis because it induces DNA double stranded breaks (DSBs) that stimulate pairing and recombination of homologous chromosomes. Although both male and female Spo11P306T/P306T mice were fertile, they had reduced sperm and oocytes, respectively. Spermatocyte chromosomes exhibited synapsis defects (especially between the X and Y chromosomes), elevated apoptotic cells, persistent markers of DSBs, and most importantly, fewer Type 1 crossovers that causes some chromosomes to have none. Spo11P306T/- mice were sterile and made fewer meiotic DSBs than Spo11+/- animals, suggesting that the Spo11P306T allele is a hypomorph and likely is delayed in making sufficient DSBs in a timely fashion. If the consequences are recapitulated in humans, it would predict phenotypes of premature ovarian failure, reduced sperm counts, and possible increased number of aneuploid gametes. These results emphasize the importance of deep phenotyping in order to accurately assess the impact of VUSs in reproduction genes.
© The Author(s) 2019. Published by Oxford University Press on behalf of Society for the Study of Reproduction.

Entities:  

Keywords:  double strand breaks; infertility genetics; meiosis; oogenesis; recombination; spermatogenesis

Mesh:

Substances:

Year:  2019        PMID: 31074776      PMCID: PMC8127034          DOI: 10.1093/biolre/ioz089

Source DB:  PubMed          Journal:  Biol Reprod        ISSN: 0006-3363            Impact factor:   4.285


  56 in total

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6.  Distinct properties of the XY pseudoautosomal region crucial for male meiosis.

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7.  Numerical constraints and feedback control of double-strand breaks in mouse meiosis.

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9.  Point-of-care whole-exome sequencing of idiopathic male infertility.

Authors:  Khalid A Fakhro; Haitham Elbardisi; Mohamed Arafa; Amal Robay; Juan L Rodriguez-Flores; Alya Al-Shakaki; Najeeb Syed; Jason G Mezey; Charbel Abi Khalil; Joel A Malek; Abdulla Al-Ansari; Sami Al Said; Ronald G Crystal
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10.  The SPO11-C631T gene polymorphism and male infertility risk: a meta-analysis.

Authors:  Zheng-Ju Ren; Peng-Wei Ren; Bo Yang; Jian Liao; Sheng-Zhuo Liu; Kun Fang; Shang-Qing Ren; Liang-Ren Liu; Qiang Dong
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  3 in total

1.  Variants in RABL2A causing male infertility and ciliopathy.

Authors:  Xinbao Ding; Robert Fragoza; Priti Singh; Shu Zhang; Haiyuan Yu; John C Schimenti
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Review 2.  Strategies to Identify Genetic Variants Causing Infertility.

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Journal:  Trends Mol Med       Date:  2021-01-08       Impact factor: 15.272

Review 3.  Idiopathic Infertility as a Feature of Genome Instability.

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Journal:  Life (Basel)       Date:  2021-06-29
  3 in total

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