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姜经航, 王逸夫, 郑杰, 雷一鸣, 陈中元, 郭毅, 郭雅婕, 郭冰倩, 吕愉芳, 王宏虹, 谢娟娟, 刘艺瑄, 金庭伟, 李碧奇, 朱晓姝, 蒋永华, 莫曾南. 2024: 基于多组学技术探讨树鼩肾上腺细胞类群以及类固醇激素合成功能. 动物学研究, 45(3): 617-632. DOI: 10.24272/j.issn.2095-8137.2023.280
引用本文: 姜经航, 王逸夫, 郑杰, 雷一鸣, 陈中元, 郭毅, 郭雅婕, 郭冰倩, 吕愉芳, 王宏虹, 谢娟娟, 刘艺瑄, 金庭伟, 李碧奇, 朱晓姝, 蒋永华, 莫曾南. 2024: 基于多组学技术探讨树鼩肾上腺细胞类群以及类固醇激素合成功能. 动物学研究, 45(3): 617-632. DOI: 10.24272/j.issn.2095-8137.2023.280
Jing-Hang Jiang, Yi-Fu Wang, Jie Zheng, Yi-Ming Lei, Zhong-Yuan Chen, Yi Guo, Ya-Jie Guo, Bing-Qian Guo, Yu-Fang Lv, Hong-Hong Wang, Juan-Juan Xie, Yi-Xuan Liu, Ting-Wei Jin, Bi-Qi Li, Xiao-Shu Zhu, Yong-Hua Jiang, Zeng-Nan Mo. 2024. Human‐like adrenal features in Chinese tree shrews revealed by multi-omics analysis of adrenal cell populations and steroid synthesis. Zoological Research, 45(3): 617-632. DOI: 10.24272/j.issn.2095-8137.2023.280
Citation: Jing-Hang Jiang, Yi-Fu Wang, Jie Zheng, Yi-Ming Lei, Zhong-Yuan Chen, Yi Guo, Ya-Jie Guo, Bing-Qian Guo, Yu-Fang Lv, Hong-Hong Wang, Juan-Juan Xie, Yi-Xuan Liu, Ting-Wei Jin, Bi-Qi Li, Xiao-Shu Zhu, Yong-Hua Jiang, Zeng-Nan Mo. 2024. Human‐like adrenal features in Chinese tree shrews revealed by multi-omics analysis of adrenal cell populations and steroid synthesis. Zoological Research, 45(3): 617-632. DOI: 10.24272/j.issn.2095-8137.2023.280

基于多组学技术探讨树鼩肾上腺细胞类群以及类固醇激素合成功能

Human‐like adrenal features in Chinese tree shrews revealed by multi-omics analysis of adrenal cell populations and steroid synthesis

  • 摘要: 树鼩(Tupaia belangeri chinensis)是一种新的、小型类灵长类实验动物,具有类似人肾上腺皮质网状带性激素分泌功能,但目前关于树鼩肾上腺的研究,尤其是细胞类群及其功能研究十分有限。深入研究肾上腺细胞类群及其类固醇激素合成功能 ,并比较树鼩和人类细胞类型的保守性和差异性,有望将树鼩发展成为研究肾上腺功能的动物模型。该研究利用单细胞RNA测序、空间转录组分析、质谱和免疫组化,全面绘制树鼩肾上腺中的细胞类型和类固醇代谢途径。通过比较树鼩、人类、猕猴和小鼠等不同动物肾上腺细胞类型的转录组,发现树鼩肾上腺表达许多与人类相同的类固醇合成关键酶,包括CYP11B2、CYP11B1、CYB5A和CHGA。我们通过LC-MS/MS分析证实,树鼩肾上腺产生醛固酮、皮质醇和脱氢表雄酮,但不产生硫化脱氢表雄酮。基于全基因组关联研究我们将树鼩肾上腺细胞类型中的基因与人类多囊卵巢综合征、原发性醛固酮增多症、高血压及相关疾病的遗传风险因子进行关联。研究结果表明,树鼩肾上腺可能是与人类肾上腺密切相关的细胞群,并且在功能上类似于人类肾上腺。我们的研究结果已公开发布在http://gxmujyzmolab.cn:16245/scAGMap/,将有助于指导该动物模型在肾上腺疾病研究中的应用。

     

    Abstract: The Chinese tree shrew (Tupaia belangeri chinensis) has emerged as a promising model for investigating adrenal steroid synthesis, but it is unclear whether the same cells produce steroid hormones and whether their production is regulated in the same way as in humans. Here, we comprehensively mapped the cell types and pathways of steroid metabolism in the adrenal gland of Chinese tree shrews using single-cell RNA sequencing, spatial transcriptome analysis, mass spectrometry, and immunohistochemistry. We compared the transcriptomes of various adrenal cell types across tree shrews, humans, macaques, and mice. Results showed that tree shrew adrenal glands expressed many of the same key enzymes for steroid synthesis as humans, including CYP11B2, CYP11B1, CYB5A, and CHGA. Biochemical analysis confirmed the production of aldosterone, cortisol, and dehydroepiandrosterone but not dehydroepiandrosterone sulfate in the tree shrew adrenal glands. Furthermore, genes in adrenal cell types in tree shrews were correlated with genetic risk factors for polycystic ovary syndrome, primary aldosteronism, hypertension, and related disorders in humans based on genome-wide association studies. Overall, this study suggests that the adrenal glands of Chinese tree shrews may consist of closely related cell populations with functional similarity to those of the human adrenal gland. Our comprehensive results (publicly available at http://gxmujyzmolab.cn:16245/scAGMap/) should facilitate the advancement of this animal model for the investigation of adrenal gland disorders.

     

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