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小鼠大脑中神经甾体生成的单细胞分辨率:中间生物合成

Single cell resolution of neurosteroidogenesis in the murine brain: intermediary biosynthesis.

作者信息

Koganti Prasanthi P, Selvaraj Vimal

出版信息

J Endocrinol. 2025 May 7;265(3). doi: 10.1530/JOE-24-0333. Print 2025 Jun 1.

Abstract

Neurosteroids synthesized within the central nervous system modulate neurotransmission, enhance neuroprotection, regulate immune responses and influence cognitive and behavioral processes. Beyond de novo synthesis of pregnenolone (PREG) from cholesterol, the brain also engages in intermediary synthesis, converting local or circulating precursors into active neurosteroids. However, the specific cell types and brain regions involved remain poorly defined. In this study, we used single-cell transcriptomic data to map the expression of steroidogenic genes and identify cell populations in the murine brain responsible for intermediary neurosteroid biosynthesis. Our findings reveal that the synthesis of bioactive steroids downstream of PREG is not streamlined but selectively compartmentalized. Notably, cells involved in de novo neurosteroid biosynthesis are largely disjointed from intermediary steps, indicating reliance on regional diffusion and/or systemic sources. Capacity for synthesis of androgens and corticosteroids anew are practically absent. While sterol sulfotransferases are expressed, sterol sulfatase required for desulfation is absent, indicating irreversible sulfonation of PREG and dehydroepiandrosterone (DHEA). Other enzymes involved in bioconversions of pregnanes and androstanes, when expressed, showed cell type- and region-specific ramifications. Although certain limitations exist in fully deciphering these results due to certain gaps in enzyme substrate specificity and isoform catalytic preferences, our study reveals valuable insights into the brain's intermediary neurosteroid pathways. The distinct compartmentalization of these processes suggests precise control over steroid regulation, which could have far-reaching functional implications. By mapping the neurosteroidogenic potential in the murine brain and sex-associated variations, this study sets the stage for future investigations into the roles of neurosteroids in brain function and their therapeutic potential in neurological disorders.

摘要

在中枢神经系统内合成的神经甾体调节神经传递、增强神经保护作用、调节免疫反应并影响认知和行为过程。除了由胆固醇从头合成孕烯醇酮(PREG)外,大脑还进行中间合成,将局部或循环的前体转化为活性神经甾体。然而,所涉及的具体细胞类型和脑区仍不清楚。在本研究中,我们使用单细胞转录组数据来绘制甾体生成基因的表达图谱,并确定小鼠脑中负责中间神经甾体生物合成的细胞群体。我们的研究结果表明,PREG下游生物活性甾体的合成并非是简单的流程化,而是有选择性地进行区室化。值得注意的是,从头神经甾体生物合成所涉及的细胞在很大程度上与中间步骤不相关,这表明其依赖于区域扩散和/或全身来源。几乎不存在重新合成雄激素和皮质类固醇的能力。虽然表达了甾醇磺基转移酶,但缺乏脱硫所需的甾醇硫酸酯酶,这表明PREG和脱氢表雄酮(DHEA)发生了不可逆的磺化。参与孕烷和雄烷生物转化的其他酶在表达时,表现出细胞类型和区域特异性的影响。尽管由于酶底物特异性和同工型催化偏好方面的某些差距在完全解读这些结果时存在一定局限性,但我们的研究揭示了关于大脑中间神经甾体途径的宝贵见解。这些过程的明显区室化表明对甾体调节有精确控制,这可能具有深远的功能意义。通过绘制小鼠脑中神经甾体生成潜力以及与性别相关的差异,本研究为未来研究神经甾体在脑功能中的作用及其在神经系统疾病中的治疗潜力奠定了基础。

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Single cell resolution of neurosteroidogenesis in the murine brain: de novo biosynthesis.
J Endocrinol. 2025 May 7;265(3). doi: 10.1530/JOE-24-0318. Print 2025 Jun 1.

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