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泛 ErbB 抑制通过破坏少突胶质细胞的髓鞘形成和有氧糖酵解损害认知功能。

Pan-ErbB inhibition impairs cognition via disrupting myelination and aerobic glycolysis in oligodendrocytes.

机构信息

College of Life Sciences, Zhejiang University, Hangzhou 310058, China.

Department of Physiology, School of Medicine, Southeast University, Nanjing 210009, China.

出版信息

Proc Natl Acad Sci U S A. 2024 Nov 5;121(45):e2405152121. doi: 10.1073/pnas.2405152121. Epub 2024 Oct 30.

Abstract

White matter (WM) abnormalities are an emerging feature of schizophrenia, yet the underlying pathophysiological mechanisms are largely unknown. Disruption of ErbB signaling, which is essential for peripheral myelination, has been genetically associated with schizophrenia and WM lesions in schizophrenic patients. However, the roles of ErbB signaling in oligodendrocytes remain elusive. Here, we used an in vivo pan-ErbB inhibition strategy and demonstrated the functions of endogenous ErbB receptors in oligodendrocytes. Through analyses of the cellular, histological, biochemical, behavioral, and electrophysiological differences in mice with manipulated ErbB activities in oligodendrocytes at different differentiation stages, we found that ErbB signaling regulates myelination and aerobic glycolysis in oligodendrocytes, and both functions are required for working memory. ErbB inhibition in oligodendrocytes at early differentiation stages induces hypomyelination by suppressing the myelinating capacity of newly formed oligodendrocytes. In contrast, ErbB inhibition in mature oligodendrocytes alters neither myelination nor oligodendrocyte numbers, but accelerates axonal conduction decline under energy stress. Mechanistically, ErbB inhibition attenuates K-Ras activities, leading to the reduced expression of lactate dehydrogenase A that promotes aerobic glycolysis in mature oligodendrocytes. Supplementation of L-lactate restores axonal conduction and working memory capacity that are suppressed by ErbB inhibition in mature oligodendrocytes. These findings emphasize the indispensable roles of ErbB signaling in WM integrity and function and provide insights into the multifaceted contributions of WM abnormalities to cognitive impairment.

摘要

脑白质(WM)异常是精神分裂症的一个新兴特征,但潜在的病理生理机制在很大程度上尚不清楚。ErbB 信号的破坏对于外周髓鞘形成至关重要,它已被遗传关联到精神分裂症和精神分裂症患者的 WM 病变。然而,ErbB 信号在少突胶质细胞中的作用仍不清楚。在这里,我们使用了一种体内泛 ErbB 抑制策略,并证明了内源性 ErbB 受体在少突胶质细胞中的作用。通过分析在不同分化阶段的少突胶质细胞中操纵 ErbB 活性的小鼠的细胞、组织学、生物化学、行为和电生理差异,我们发现 ErbB 信号调节少突胶质细胞中的髓鞘形成和有氧糖酵解,这两种功能都对工作记忆至关重要。在早期分化阶段,ErbB 抑制通过抑制新形成的少突胶质细胞的髓鞘形成能力,导致少突胶质细胞的少突胶质化。相比之下,在成熟的少突胶质细胞中抑制 ErbB 既不改变髓鞘形成也不改变少突胶质细胞数量,但在能量应激下加速轴突传导下降。从机制上讲,ErbB 抑制减弱了 K-Ras 活性,导致促进成熟少突胶质细胞中有氧糖酵解的乳酸脱氢酶 A 的表达减少。补充 L-乳酸可恢复由成熟少突胶质细胞中 ErbB 抑制引起的轴突传导和工作记忆能力的抑制。这些发现强调了 ErbB 信号在 WM 完整性和功能中的不可或缺作用,并为 WM 异常对认知障碍的多方面贡献提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90c1/11551437/cb9f699fbecc/pnas.2405152121fig01.jpg

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