Loss of function variant in CIP2A associated with female infertility with early embryonic arrest and fragmentation
Early embryonic arrest and fragmentation (EEAF) is a common cause of female infertility, but the genetic causes remain to be largely unknown. CIP2A encodes the cellular inhibitor of PP2A, playing a crucial role in mitosis and mouse oocyte meiosis. Exome sequencing and Sanger sequencing were performe...
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Veröffentlicht in: | Biochimica et biophysica acta. Molecular basis of disease 2024-08, Vol.1870 (6), p.167228, Article 167228 |
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Zusammenfassung: | Early embryonic arrest and fragmentation (EEAF) is a common cause of female infertility, but the genetic causes remain to be largely unknown. CIP2A encodes the cellular inhibitor of PP2A, playing a crucial role in mitosis and mouse oocyte meiosis.
Exome sequencing and Sanger sequencing were performed to identify candidate causative genes in patients with EEAF. The pathogenicity of the CIP2A variant was assessed and confirmed in cultured cell lines and human oocytes through Western blotting, semi-quantitative RT-PCR, TUNEL staining, and fluorescence localization analysis.
We identified CIP2A (c.1510C > T, p.L504F) as a novel disease-causing gene in human EEAF from a consanguineous family. L504 is highly conserved throughout evolution. The CIP2A variant (c.1510C > T, p.L504F) reduced the expression level of the mutant CIP2A protein, leading to the abnormal aggregation of mutant CIP2A protein and cell apoptosis. Abnormal aggregation of CIP2A protein and chromosomal dispersion occurred in the patient's oocytes and early embryos. We further replicated the patient phenotype by knockdown CIP2A in human oocytes. Additionally, CIP2A deficiency resulted in decreased levels of phosphorylated ERK1/2.
We first found that the CIP2A loss-of-function variant associate with female infertility characterized by EEAF. Our findings suggest the uniqueness and importance of CIP2A gene in human oocyte and early embryo development.
This work was supported by National Key Research and Development Program of China (2023YFC2706302), the National Natural Science Foundation of China (81000079, 81170165, and 81870959), the HUST Academic Frontier Youth Team (2016QYTD02), and the Key Research of Huazhong University of Science and Technology, Tongji Hospital (2022A20).
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•Identification of CIP2A as a novel disease-causing gene for EEAF.•Demonstration that the CIP2A variant (c.1510C > T, p.L504F) is loss of function variant.•Distinct function of CIP2A in human oocytes compared to mouse oocytes.•Phenotype observed in the patient is replicated by CIP2A knockdown in human oocytes.•Apoptosis and reduced pERK1/2 levels caused by the CIP2A variant may contribute to EEAF. |
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ISSN: | 0925-4439 1879-260X 1879-260X |
DOI: | 10.1016/j.bbadis.2024.167228 |