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Updated: Aug 19, 2025

A Seminiferous Tubule Squash Technique for the Cytological Analysis of Spermatogenesis Using the Mouse Model
Published on: February 6, 2018
Involvement of GLCCI1 in mouse spermatogenesis
Masaru Takada1, Daisuke Fukuhara1, Toshihiko Takiura1
1Department of Pediatrics, Kyorin University School of Medicine, Tokyo, Japan.
Abstract:
Spermatid production is a complex regulatory process in which coordination between hormonal control and apoptosis plays a pivotal role in maintaining a balanced number of sperm cells. Apoptosis in spermatogenesis is controlled by pro-apoptotic and anti-apoptotic molecules. Hormones involved in the apoptotic process during spermatogenesis include gonadotrophins, sex hormones, and glucocorticoid (GC). GC acts broadly as an apoptosis inducer by binding to its receptor (glucocorticoid receptor: GR) during organ development processes, such as spermatogenesis. However, the downstream pathway induced in GC-GR signaling and the apoptotic process during spermatogenesis remains poorly understood. We reported previously that GC induces full-length glucocorticoid-induced transcript 1 (GLCCI1-long), which functions as an anti-apoptotic mediator in thymic T cell development. Here, we demonstrate that mature murine testis expresses a novel isoform of GLCCI1 protein (GLCCI1-short) in addition to GLCCI1-long. We demonstrate that GLCCI1-long is expressed in spermatocytes along with GR. In contrast, GLCCI1-short is primarily expressed in spermatids where GR is absent; instead, the estrogen receptor is expressed. GLCCI1-short also binds to LC8, which is a known mediator of the anti-apoptotic effect of GLCCI1-long. A luciferase reporter assay revealed that β-estradiol treatment synergistically increased Glcci1-short promotor-driven luciferase activity in Erα-overexpressing cells. Together with the evidence that the conversion of testosterone to estrogen is preceded by aromatase expression in spermatids, we hypothesize that estrogen induces GLCCI1-short, which, in turn, may function as a novel anti-apoptotic mediator in mature murine testis.
Insights
Glucocorticoids (GC) regulate sperm production via apoptosis. This study identifies a new GC-induced protein, GLCCI1-short, in mouse testes, potentially mediating estrogen
Area of Science:
- Reproductive Biology
- Molecular Endocrinology
- Cell Death Pathways
Background:
- Spermatid production relies on hormonal control and apoptosis.
- Glucocorticoids (GC) and their receptor (GR) influence spermatogenesis-related apoptosis, but downstream pathways are unclear.
- GC induces GLCCI1-long, an anti-apoptotic factor in T cells.
Purpose of the Study:
- To investigate novel isoforms of glucocorticoid-induced transcript 1 (GLCCI1) in murine testes.
- To elucidate the role of GLCCI1 isoforms and their associated receptors in spermatogenesis.
- To explore the potential involvement of estrogen in regulating GLCCI1 expression during spermatogenesis.
Main Methods:
- Western blotting to detect GLCCI1 isoforms (GLCCI1-long and GLCCI1-short) and receptors (GR, estrogen receptor) in murine testis.
- Immunohistochemistry to determine the localization of GLCCI1 isoforms and receptors within spermatogenic cells.
- Luciferase reporter assays to assess the effect of β-estradiol on Glcci1-short promoter activity in cells overexpressing estrogen receptor alpha (Erα).
Main Results:
- A novel isoform, GLCCI1-short, was identified in mature murine testis alongside GLCCI1-long.
- GLCCI1-long and GR are expressed in spermatocytes, while GLCCI1-short and estrogen receptor are found in spermatids.
- GLCCI1-short binds to LC8, and β-estradiol treatment enhances Glcci1-short promoter activity in Erα-expressing cells.
Conclusions:
- Estrogen, via aromatase in spermatids, likely induces GLCCI1-short.
- GLCCI1-short may act as a novel anti-apoptotic mediator in spermatids, complementing the role of GLCCI1-long in spermatocytes.
- This study reveals a new layer of hormonal regulation in spermatogenesis involving estrogen and GLCCI1 isoforms.

