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MIWI N-terminal RG motif promotes efficient pachytene piRNA production and spermatogenesis independent of LINE1 transposon silencing

PIWI proteins and their associated piRNAs act to silence transposons and promote gametogenesis. Murine PIWI proteins MIWI, MILI, and MIWI2 have multiple arginine and glycine (RG)-rich motifs at their N-terminal domains. Despite being known as docking sites for the TDRD family proteins, the in vivo r...

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Autores principales: Wei, Chao, Jing, Jiongjie, Yan, Xiaoyuan, Mann, Jeffrey M., Geng, Ruirong, Xie, Huirong, Demireva, Elena Y., Hess, Rex A., Ding, Deqiang, Chen, Chen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10681313/
https://www.ncbi.nlm.nih.gov/pubmed/37956204
http://dx.doi.org/10.1371/journal.pgen.1011031
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author Wei, Chao
Jing, Jiongjie
Yan, Xiaoyuan
Mann, Jeffrey M.
Geng, Ruirong
Xie, Huirong
Demireva, Elena Y.
Hess, Rex A.
Ding, Deqiang
Chen, Chen
author_facet Wei, Chao
Jing, Jiongjie
Yan, Xiaoyuan
Mann, Jeffrey M.
Geng, Ruirong
Xie, Huirong
Demireva, Elena Y.
Hess, Rex A.
Ding, Deqiang
Chen, Chen
author_sort Wei, Chao
collection PubMed
description PIWI proteins and their associated piRNAs act to silence transposons and promote gametogenesis. Murine PIWI proteins MIWI, MILI, and MIWI2 have multiple arginine and glycine (RG)-rich motifs at their N-terminal domains. Despite being known as docking sites for the TDRD family proteins, the in vivo regulatory roles for these RG motifs in directing PIWI in piRNA biogenesis and spermatogenesis remain elusive. To investigate the functional significance of RG motifs in mammalian PIWI proteins in vivo, we genetically engineered an arginine to lysine (RK) point mutation of a conserved N-terminal RG motif in MIWI in mice. We show that this tiny MIWI RG motif is indispensable for piRNA biogenesis and male fertility. The RK mutation in the RG motif disrupts MIWI-TDRKH interaction and impairs enrichment of MIWI to the intermitochondrial cement (IMC) for efficient piRNA production. Despite significant overall piRNA level reduction, piRNA trimming and maturation are not affected by the RK mutation. Consequently, Miwi(RK) mutant mice show chromatoid body malformation, spermatogenic arrest, and male sterility. Surprisingly, LINE1 transposons are effectively silenced in Miwi(RK) mutant mice, indicating a LINE1-independent cause of germ cell arrest distinctive from Miwi knockout mice. These findings reveal a crucial function of the RG motif in directing PIWI proteins to engage in efficient piRNA production critical for germ cell progression and highlight the functional importance of the PIWI N-terminal motifs in regulating male fertility.
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spelling pubmed-106813132023-11-13 MIWI N-terminal RG motif promotes efficient pachytene piRNA production and spermatogenesis independent of LINE1 transposon silencing Wei, Chao Jing, Jiongjie Yan, Xiaoyuan Mann, Jeffrey M. Geng, Ruirong Xie, Huirong Demireva, Elena Y. Hess, Rex A. Ding, Deqiang Chen, Chen PLoS Genet Research Article PIWI proteins and their associated piRNAs act to silence transposons and promote gametogenesis. Murine PIWI proteins MIWI, MILI, and MIWI2 have multiple arginine and glycine (RG)-rich motifs at their N-terminal domains. Despite being known as docking sites for the TDRD family proteins, the in vivo regulatory roles for these RG motifs in directing PIWI in piRNA biogenesis and spermatogenesis remain elusive. To investigate the functional significance of RG motifs in mammalian PIWI proteins in vivo, we genetically engineered an arginine to lysine (RK) point mutation of a conserved N-terminal RG motif in MIWI in mice. We show that this tiny MIWI RG motif is indispensable for piRNA biogenesis and male fertility. The RK mutation in the RG motif disrupts MIWI-TDRKH interaction and impairs enrichment of MIWI to the intermitochondrial cement (IMC) for efficient piRNA production. Despite significant overall piRNA level reduction, piRNA trimming and maturation are not affected by the RK mutation. Consequently, Miwi(RK) mutant mice show chromatoid body malformation, spermatogenic arrest, and male sterility. Surprisingly, LINE1 transposons are effectively silenced in Miwi(RK) mutant mice, indicating a LINE1-independent cause of germ cell arrest distinctive from Miwi knockout mice. These findings reveal a crucial function of the RG motif in directing PIWI proteins to engage in efficient piRNA production critical for germ cell progression and highlight the functional importance of the PIWI N-terminal motifs in regulating male fertility. Public Library of Science 2023-11-13 /pmc/articles/PMC10681313/ /pubmed/37956204 http://dx.doi.org/10.1371/journal.pgen.1011031 Text en © 2023 Wei et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Wei, Chao
Jing, Jiongjie
Yan, Xiaoyuan
Mann, Jeffrey M.
Geng, Ruirong
Xie, Huirong
Demireva, Elena Y.
Hess, Rex A.
Ding, Deqiang
Chen, Chen
MIWI N-terminal RG motif promotes efficient pachytene piRNA production and spermatogenesis independent of LINE1 transposon silencing
title MIWI N-terminal RG motif promotes efficient pachytene piRNA production and spermatogenesis independent of LINE1 transposon silencing
title_full MIWI N-terminal RG motif promotes efficient pachytene piRNA production and spermatogenesis independent of LINE1 transposon silencing
title_fullStr MIWI N-terminal RG motif promotes efficient pachytene piRNA production and spermatogenesis independent of LINE1 transposon silencing
title_full_unstemmed MIWI N-terminal RG motif promotes efficient pachytene piRNA production and spermatogenesis independent of LINE1 transposon silencing
title_short MIWI N-terminal RG motif promotes efficient pachytene piRNA production and spermatogenesis independent of LINE1 transposon silencing
title_sort miwi n-terminal rg motif promotes efficient pachytene pirna production and spermatogenesis independent of line1 transposon silencing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10681313/
https://www.ncbi.nlm.nih.gov/pubmed/37956204
http://dx.doi.org/10.1371/journal.pgen.1011031
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