4.7 Article

Zrsr2 and functional U12-dependent spliceosome are necessary for follicular development

期刊

ISCIENCE
卷 25, 期 2, 页码 -

出版社

CELL PRESS
DOI: 10.1016/j.isci.2022.103860

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资金

  1. Spanish Ministry of Science and Innovation [AGL2015-66145, RTI2018-093548-B-I00, BES-2016-077794]
  2. Talent Attraction Postdoctoral Fellowship from the Madrid Community [2017-T2/BIO-5182]
  3. MICINN [RYC2018-025666-I]
  4. Marie Sklodowska-Curie ITN European Joint Doctorate in Biology and Technology of Reproductive Health [REP-BIOTECH 675526]

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ZRSR2 mutations affect blood cell, oogenesis, and female fertility by altering gene expression and alternative splicing events, mainly in U12-type introns.
ZRSR2 is a splicing factor involved in recognition of 30-intron splice sites that is frequently mutated in myeloid malignancies and several tumors; however, the role of mutations of Zrsr2 in other tissues has not been analyzed. To explore the biological role of ZRSR2, we generated three Zrsr2 mutant mouse lines. All Zrsr2 mutant lines exhibited blood cell anomalies, and in two lines, oogenesis was blocked at the secondary follicle stage. RNA-seq of Zrsr2mu secondary follicles showed aberrations in gene expression and showed altered alternative splicing (AS) events involving enrichment of U12-type intron retention (IR), supporting the functional Zrsr2 action in minor spliceosomes. IR events were preferentially associated with centriole replication, protein phosphorylation, and DNA damage checkpoint. Notably, we found alterations in AS events of 50 meiotic genes. These results indicate that ZRSR2 mutations alter splicing mainly in U12-type introns, which may affect peripheral blood cells, and impede oogenesis and female fertility.

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