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Kawahata, I.

Publications and source records attributed to Kawahata, I..

2 recordsLinked to original sources

Astrocytic FABP5 drives non-cell-autonomous oligodendrocyte injury in multiple system atrophy by promoting TNF signaling and ferroptotic stress

Multiple system atrophy (MSA) is a fatal -synucleinopathy characterized by progressive parkinsonism, cerebellar and autonomic dysfunction. Currently, the mechanisms driving cerebellar white matter neuroinflammation and degeneration in MSA are poorly understood. Here, we identified fatty acid-binding protein 5 (FABP5) as a key factor regulating cerebellar inflammation in MSA pathogenesis in a detailed study of human, mouse and cultured astrocytes. Firstly, transcriptomic profiling of human MSA cerebellar white matter revealed activation of pro-inflammatory and ferroptotic pathways, with FABP5 identified as a key pathway component that is upregulated. We confirmed that FABP5 is upregulated in reactive astrocytes in the PLP--syn transgenic mouse model, also in LPS-treated primary astrocytes. Fabp5 silencing suppressed TNF signaling, mitigated ferroptosis, and restored mitochondrial function. These findings suggest astrocytic FABP5 as a central intracellular regulator linking glial inflammation, ferroptosis, and mitochondrial injury. Overall, this mechanism suggests that FABP5 drives pathology mediated by astrocytes oligodendroglia in MSA, therefore representing a novel and promising therapeutic target.

neuroscience↗

Epsin2, a novel target for multiple system atrophy therapy via regulating α-synuclein propagation associated with FABP7

Multiple system atrophy (MSA) is a neurodegenerative disease showing accumulation of misfolded -synuclein and myelin disruption. However, the mechanism how -synuclein (-syn) accumulate in MSA brain remains unclear. Here, we identify the protein epsin-2 as a novel target for MSA therapy via controlling -synuclein accumulation. In MSA mouse model, PLP-hSyn transgenic mice and FABP7/-syn hetero-aggregates injected mice, we firstly found that fatty acid-binding protein 7 (FABP7) related to MSA development and formed hetero-aggregates with -syn, which exhibited stronger toxicity than -syn aggregates. Furthermore, injected FABP7/-syn hetero-aggregates in mice selectively accumulated in oligodendrocytes and Purkinje neurons and cause cerebellar dysfunction. By bioinformatic analyses, the protein epsin-2 expresses in both oligodendrocyte and Purkinje cells was found as a potential target to regulate FABP7/-syn hetero-aggregates propagation via clathrin-dependent endocytosis. The AAV5-dependent epsin-2 knock-down mice exhibited decreased levels of aggregates accumulation in Purkinje neurons and oligodendrocytes as well as performed improved myelin levels and Purkinje neurons in cerebellum and motor functions. Thus, we propose epsin-2 as a novel and therapeutic candidate for MSA.

pathology↗