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星形胶质细胞通过磷酸摄取转运蛋白 PiT2 和外排转运蛋白 XPR1 的极化分布来调节大脑磷酸盐稳态。

Astrocytes modulate brain phosphate homeostasis via polarized distribution of phosphate uptake transporter PiT2 and exporter XPR1.

机构信息

Center for Excellence in Brain Science and Intelligence Technology, Institute of Neuroscience and State Key Laboratory of Neuroscience, Chinese Academy of Sciences, Shanghai 200031, China; Lin Gang Laboratory, Shanghai 201602, China.

Department of Neurology, The First Affiliated Hospital, Institute of Neuroscience, Fujian Key Laboratory of Molecular Neurology, Fujian Medical University, Fuzhou 350005, China.

出版信息

Neuron. 2024 Sep 25;112(18):3126-3142.e8. doi: 10.1016/j.neuron.2024.06.020. Epub 2024 Jul 16.

Abstract

Aberrant inorganic phosphate (Pi) homeostasis causes brain calcification and aggravates neurodegeneration, but the underlying mechanism remains unclear. Here, we found that primary familial brain calcification (PFBC)-associated Pi transporter genes Pit2 and Xpr1 were highly expressed in astrocytes, with importer PiT2 distributed over the entire astrocyte processes and exporter XPR1 localized to astrocyte end-feet on blood vessels. This polarized PiT2 and XPR1 distribution endowed astrocyte with Pi transport capacity competent for brain Pi homeostasis, which was disrupted in mice with astrocyte-specific knockout (KO) of either Pit2 or Xpr1. Moreover, we found that Pi uptake by PiT2, and its facilitation by PFBC-associated galactosidase MYORG, were required for the high Pi transport capacity of astrocytes. Finally, brain calcification was suppressed by astrocyte-specific PiT2 re-expression in Pit2-KO mice. Thus, astrocyte-mediated Pi transport is pivotal for brain Pi homeostasis, and elevating astrocytic Pi transporter function represents a potential therapeutic strategy for reducing brain calcification.

摘要

异常的无机磷酸盐(Pi)稳态失衡会导致大脑钙化并加重神经退行性变,但其中的机制仍不清楚。在这里,我们发现原发性家族性脑钙化(PFBC)相关的 Pi 转运体基因 Pit2 和 Xpr1 在星形胶质细胞中高表达,Pi 转运体 PiT2 分布在整个星形胶质细胞突起上,而 Pi 外排体 XPR1 则定位于血管上的星形胶质细胞终足。这种极化的 PiT2 和 XPR1 分布使星形胶质细胞具有维持大脑 Pi 稳态的 Pi 转运能力,而在星形胶质细胞特异性敲除 Pit2 或 Xpr1 的小鼠中,这种能力被破坏。此外,我们发现 PiT2 摄取 Pi 及其与 PFBC 相关的半乳糖苷酶 MYORG 的促进作用,对于星形胶质细胞的高 Pi 转运能力是必需的。最后,在 Pit2-KO 小鼠中,通过星形胶质细胞特异性 PiT2 再表达抑制了大脑钙化。因此,星形胶质细胞介导的 Pi 转运对于大脑 Pi 稳态至关重要,提高星形胶质细胞 Pi 转运体的功能可能是减少大脑钙化的一种潜在治疗策略。

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