4.7 Article

Precursor RNA processing 3 is required for male fertility, and germline stem cell self-renewal and differentiation via regulating spliceosome function in Drosophila testes

Journal

SCIENTIFIC REPORTS
Volume 9, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41598-019-46419-x

Keywords

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Funding

  1. National Natural Science Foundation of China [31701298, 81803505]
  2. Natural Science Foundation of Jiangsu Province [BK20170562, BK20170564]
  3. Key Research Foundation of Zhenjiang Social Development [SH2016028, SH2017013, SH2017020, SH2018065]
  4. Open Fund of State Key Laboratory of Reproductive Medicine of Nanjing Medical University [SKLRM-KA201603, SKLRM-KA201704]
  5. Science Foundation for Doctorate Research of the Affiliated Hospital of Jiangsu University [jdfyRC2016005, jdfyRC2016003]
  6. Suzhou Key Laboratory of male reproduction research [SZS201718]
  7. Basic Program of Nanjing Medical University [2017NJMU163]
  8. Suzhou Key Medical Center [SZZX201505]
  9. Suzhou Introduced Project of Clinical Medical Expert Team [SZYJTD201708]
  10. Jiangsu Provincial Medical Innovation Team [CXTDB2017013]

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The nuclear pre-mRNA spliceosome is a large complex containing five small nuclear ribonucleoprotein particles (snRNPs) and many splicing factors. Messenger RNAs (mRNAs) are generated from pre-mRNAs by the process of RNA splicing, which is conserved in eukaryotes. Precursor RNA processing 3 (Prp3) is a U4/U6-associated snRNP whose function remains largely unknown. In the present study, using genetic manipulation of a Drosophila melanogaster testis model, we demonstrated that Prp3 is essential for male fertility in Drosophila. Prp3 deficiency in germline stem cells (GSCs) and early cyst cells resulted in abnormal structure of testes and maintenance defects of GSCs and cyst stem cells. Knockdown of Prp3 in spermatogonia and early cyst cells mediated tumor formation caused by differentiation defects. Using an in vitro assay, knockdown of Prp3 decreased proliferation and increased cell death, and controlled the spliceosome function via regulating spliceosome subunits expression in Drosophila S2 cells. We also identified two other splicing factors in the Prp complex (Prp19 and Prp8), which mimicked the phenotype of Prp3 in the Drosophila stem cell niche. Our results revealed a significant role of precursor RNA processing factors in male testes, indicating that Prp3, a key spliceosome component in the Prp complex, is essential for male fertility, and germline stem cell self-renewal and differentiation, via regulating the spliceosome function in Drosophila testes.

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