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7 May 2021 Roles of Stra8 and Tcerg1l in retinoic acid induced spermatogonial differentiation in mouse
Nilam Sinha, Eoin C. Whelan, John W. Tobias, Mary Avarbock, Darko Stefanovski, Ralph L. Brinster
Author Affiliations +
Abstract

Retinoic acid (RA) induces spermatogonial differentiation, but the mechanism by which it operates remains largely unknown. We developed a germ cell culture assay system to study genes involved in spermatogonial differentiation triggered by RA. Stimulated by RA 8 (Stra8), a RA-inducible gene, is indispensable for meiosis initiation, and its deletion results in a complete block of spermatogenesis at the pre-leptotene/zygotene stage. To interrogate the role of Stra8 in RA mediated differentiation of spermatogonia, we derived germ cell cultures from the neonatal testis of both wild type and Stra8 knock-out mice. We provide the first evidence that Stra8 plays a crucial role in modulating the responsiveness of undifferentiated spermatogonia to RA and facilitates transition to a differentiated state. Stra8-mediated differentiation is achieved through the downregulation of a large portfolio of genes and pathways, most notably including genes involved in the spermatogonial stem cell self-renewal process. We also report here for the first time the role of transcription elongation regulator-1 like (Tcerg1l) as a downstream effector of RA-induced spermatogonial differentiation.

Summary sentence

The genes stimulated by retinoic acid 8 (Stra8) and transcription elongation regulator-1 like (Tcerg1l) are necessary in early-stage male germ cell differentiation induced by retinoic acid (RA). Stra8 is critical in modulating the responsiveness of undifferentiated spermatogonia to RA.

© The Author(s) 2021. Published by Oxford University Press on behalf of Society for the Study of Reproduction. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com
Nilam Sinha, Eoin C. Whelan, John W. Tobias, Mary Avarbock, Darko Stefanovski, and Ralph L. Brinster "Roles of Stra8 and Tcerg1l in retinoic acid induced spermatogonial differentiation in mouse," Biology of Reproduction 105(2), 503-518, (7 May 2021). https://doi.org/10.1093/biolre/ioab093
Received: 29 November 2020; Accepted: 21 April 2021; Published: 7 May 2021
KEYWORDS
differentiation
spermatogonia
SSC
Stra8
Tcerg1l
Transplantation
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