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新型报告基因小鼠的促卵泡激素受体(Fshr)表达图谱。

Atlas of Fshr expression from novel reporter mice.

作者信息

Chen Hongqian, Fang Hui-Qing, Liu Jin-Tao, Chang Shi-Yu, Cheng Li-Ben, Sun Ming-Xin, Feng Jian-Rui, Liu Ze-Min, Zhang Yong-Hong, Rosen Clifford J, Liu Peng

机构信息

Laboratory of Bone and Adipose Biology, Shanxi Medical University, Taiyuan, China.

Department of Dentistry, The 980th Hospital of the PLA Joint Logistic Support Force, Shijiazhuang, China.

出版信息

Elife. 2025 Jan 8;13:RP93413. doi: 10.7554/eLife.93413.

Abstract

The FSH-FSHR pathway has been considered an essential regulator in reproductive development and fertility. But there has been emerging evidence of FSHR expression in extragonadal organs. This poses new questions and long-term debates regarding the physiological role of the FSH-FSHR, and underscores the need for reliable, in vivo analysis of FSHR expression in animal models. However, conventional methods have proven insufficient for examining FSHR expression due to several limitations. To address this challenge, we developed Fshr-ZsGreen reporter mice under the control of Fshr endogenous promoter using CRISPR-Cas9. With this novel genetic tool, we provide a reliable readout of Fshr expression at single-cell resolution level in vivo and in real time. Reporter animals were also subjected to additional analyses,to define the accurate expression profile of FSHR in gonadal and extragonadal organs/tissues. Our compelling results not only demonstrated Fshr expression in intragonadal tissues but also, strikingly, unveiled notably increased expression in Leydig cells, osteoblast lineage cells, endothelial cells in vascular structures, and epithelial cells in bronchi of the lung and renal tubes. The genetic decoding of the widespread pattern of Fshr expression highlights its physiological relevance beyond reproduction and fertility, and opens new avenues for therapeutic options for age-related disorders of the bones, lungs, kidneys, and hearts, among other tissues. Exploiting the power of the Fshr knockin reporter animals, this report provides the first comprehensive genetic record of the spatial distribution of FSHR expression, correcting a long-term misconception about Fshr expression and offering prospects for extensive exploration of FSH-FSHR biology.

摘要

FSH-FSHR 信号通路被认为是生殖发育和生育能力的重要调节因子。但越来越多的证据表明 FSHR 在性腺外器官中表达。这就 FSH-FSHR 的生理作用提出了新问题并引发了长期争论,同时也凸显了在动物模型中对 FSHR 表达进行可靠的体内分析的必要性。然而,由于一些局限性,传统方法已被证明不足以检测 FSHR 的表达。为应对这一挑战,我们利用 CRISPR-Cas9 技术在 Fshr 内源性启动子的控制下培育出了 Fshr-ZsGreen 报告基因小鼠。借助这一新型遗传工具,我们能够在体内实时以单细胞分辨率可靠地读出 Fshr 的表达情况。对报告基因动物还进行了额外分析,以确定 FSHR 在性腺和性腺外器官/组织中的准确表达谱。我们令人信服的结果不仅证明了 Fshr 在性腺内组织中的表达,而且令人惊讶地揭示了在睾丸间质细胞、成骨细胞系细胞、血管结构中的内皮细胞以及肺支气管和肾小管中的上皮细胞中表达显著增加。Fshr 广泛表达模式的基因解码突出了其在生殖和生育能力之外的生理相关性,并为治疗骨骼、肺、肾和心脏等组织与年龄相关的疾病开辟了新的治疗途径。利用 Fshr 基因敲入报告基因动物的优势,本报告首次全面记录了 FSHR 表达的空间分布的遗传信息,纠正了长期以来对 Fshr 表达的误解,并为广泛探索 FSH-FSHR 生物学提供了前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7416/11709436/2be75024df87/elife-93413-fig1.jpg

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