TY - JOUR
T1 - GPAT2 is required for piRNA biogenesis, transposon silencing, and maintenance of spermatogonia in mice
AU - Shiromoto, Yusuke
AU - Kuramochi-Miyagawa, Satomi
AU - Nagamori, Ippei
AU - Chuma, Shinichiro
AU - Arakawa, Tatsuhiko
AU - Nishimura, Toru
AU - Hasuwa, Hidetoshi
AU - Tachibana, Taro
AU - Ikawa, Masahito
AU - Nakano, Toru
N1 - Funding Information:
This work was supported in part by a Grant-in-Aid for Scientific Research on Research (A) (#15H02509), Research (B) (#15H04699) from MEXT/JSPS, and Culture, and Japan Agency for Medical Research and Development-Core Research for Evolutional Science and Technology (AMED-CREST).
Publisher Copyright:
© 2019 The Author(s) . Published by Oxford University Press on behalf of Society for the Study of Reproduction.
PY - 2019/7/1
Y1 - 2019/7/1
N2 - PIWI-interacting RNAs (piRNAs), a subclass of germ cell-specific noncoding small RNAs, are essential for de novo DNA methylation of retrotransposon genes in embryonic testes. PIWIL2/MILI, one of three mouse PIWI family members, is indispensable for piRNA production, DNA methylation of retrotransposons presumably via piRNA, and normal spermatogenesis. In vitro analysis using germline stem cells (GS cells) revealed that glycerol-3-phosphate acyltransferase 2 (GPAT2), which is a mitochondrial outer membrane protein involved in generation of lysophosphatidic acid (LPA) and highly expressed in testes, plays important roles in spermatogenesis. Namely, GPAT2 binds to PIWIL2 and is closely involved in the biogenesis of piRNAs; this process is independent of its enzymatic activity on LPA. However, GS cells recapitulate only a limited phase of spermatogenesis and the biological functions of GPAT2 remain largely unknown. In this study, we generated GPAT2-deficient mice and conducted comprehensive analyses. The deficient mice showed defective piRNA production and subsequent de-silencing of IAP and Line-1 retrotransposons in fetal testes. In addition, apoptosis of pachytene spermatocytes was observed. These abnormalities were all common to the phenotype of PIWIL2-deficient mice, in which piRNA production was impaired. GPAT2-deficient mice exhibited apoptosis in spermatogonia at the neonatal stage, which was not observed in PIWIL2-deficient mice. These data show that GPAT2 plays a critical role in preventing apoptosis in spermatogonia.
AB - PIWI-interacting RNAs (piRNAs), a subclass of germ cell-specific noncoding small RNAs, are essential for de novo DNA methylation of retrotransposon genes in embryonic testes. PIWIL2/MILI, one of three mouse PIWI family members, is indispensable for piRNA production, DNA methylation of retrotransposons presumably via piRNA, and normal spermatogenesis. In vitro analysis using germline stem cells (GS cells) revealed that glycerol-3-phosphate acyltransferase 2 (GPAT2), which is a mitochondrial outer membrane protein involved in generation of lysophosphatidic acid (LPA) and highly expressed in testes, plays important roles in spermatogenesis. Namely, GPAT2 binds to PIWIL2 and is closely involved in the biogenesis of piRNAs; this process is independent of its enzymatic activity on LPA. However, GS cells recapitulate only a limited phase of spermatogenesis and the biological functions of GPAT2 remain largely unknown. In this study, we generated GPAT2-deficient mice and conducted comprehensive analyses. The deficient mice showed defective piRNA production and subsequent de-silencing of IAP and Line-1 retrotransposons in fetal testes. In addition, apoptosis of pachytene spermatocytes was observed. These abnormalities were all common to the phenotype of PIWIL2-deficient mice, in which piRNA production was impaired. GPAT2-deficient mice exhibited apoptosis in spermatogonia at the neonatal stage, which was not observed in PIWIL2-deficient mice. These data show that GPAT2 plays a critical role in preventing apoptosis in spermatogonia.
KW - DNA methylation
KW - apoptosis
KW - piRNA
KW - spermatogenesis
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U2 - 10.1093/biolre/ioz056
DO - 10.1093/biolre/ioz056
M3 - Article
C2 - 30951587
AN - SCOPUS:85069293815
SN - 0006-3363
VL - 101
SP - 248
EP - 256
JO - Biology of reproduction
JF - Biology of reproduction
IS - 1
ER -