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Visualizing Impairment of the Endothelial and Glial Barriers of the Neurovascular Unit during Experimental Autoimmune Encephalomyelitis In Vivo
Published on: March 26, 2019
RGMa Participates in the Blood-Brain Barrier Dysfunction Through BMP/BMPR/YAP Signaling in Multiple Sclerosis
Lei Zhang1, Shi Tang1, Yue Ma1
1Department of Neurology, The First Affiliated Hospital of Chongqing Medical University, Chongqing, China.
Abstract:
The infiltration of inflammatory cells into the central nervous system (CNS) through the dysfunctional blood-brain barrier (BBB) was critical in the early stages of MS. However, the mechanisms underlying BBB dysfunction remain unknown. Repulsive guidance molecule-a (RGMa) is involved in the pathogenesis of multiple sclerosis (MS), but its role needs to be further explored. This study aimed to evaluate whether RMGa regulates BBB permeability in endothelial cells and MS, and if so, what mechanism may be involved. We created an experimental autoimmune encephalomyelitis (EAE) model in C57BL/6 mice and a human brain microvascular endothelial cell (HBMEC) culture. The permeability of the BBB is measured in response to various interventions. Our results showed that RGMa is expressed in the endothelial cells in HBMECs and EAE mice. RGMa and its signaling counterpart, bone morphogenetic protein 2 (BMP2)/bone morphogenetic protein receptor type II (BMPRII), were gradually increased as the disease progressed. Moreover, as EAE progressed and the BBB was disrupted, the downstream effector, yes-associated protein (YAP), as well as the tight junctional proteins zonula occludens 1 (ZO-1) and claudin-5, decreased significantly. The permeability assay revealed that lentivirus-induced RGMa overexpression in HBMECs caused a significant breakdown of the BBB, whereas RGMa knockdown significantly strengthens the integrity of the BBB. Furthermore, specifically activating BMPR II or inhibiting YAP based on RGMa knockdown results in a significant decrease of ZO-1 and claudin-5 in vitro. On the contrary, inhibition of BMPR II or activation of YAP after upregulating RGMa prevents the downregulation of ZO-1 and claudin-5 in HBMECs. In addition, serum-soluble RGMa (sRGMa) levels were significantly higher in MS patients, particularly in MS patients with Gd+ lesions, indicating that the BBB has been disrupted. In conclusion, this study shows that RGMa causes BBB dysfunction in endothelial cells via BMP2/BMPR II/YAP, resulting in BBB integrity disruption in MS and that it could be a novel therapeutic target for BBB permeability in MS.
Insights
Repulsive guidance molecule-a (RGMa) disrupts the blood-brain barrier (BBB) in multiple sclerosis (MS) by activating the BMP2/BMPR II/YAP pathway, offering a new therapeutic target for MS.
Area of Science:
- Neuroimmunology
- Vascular Biology
- Cellular Signaling
Background:
- The blood-brain barrier (BBB) dysfunction is critical in multiple sclerosis (MS) pathogenesis, but underlying mechanisms remain unclear.
- Repulsive guidance molecule-a (RGMa) is implicated in MS, yet its precise role in BBB integrity requires further investigation.
Purpose of the Study:
- To investigate RGMa's role in regulating BBB permeability in endothelial cells and MS.
- To elucidate the molecular mechanisms by which RGMa influences BBB integrity.
Main Methods:
- Established an experimental autoimmune encephalomyelitis (EAE) mouse model and human brain microvascular endothelial cell (HBMEC) cultures.
- Assessed BBB permeability via RGMa overexpression and knockdown, and analyzed signaling pathways involving BMP2/BMPRII and YAP.
- Measured RGMa levels in MS patients with and without contrast-enhancing lesions.
Main Results:
- RGMa, BMP2/BMPRII, and YAP expression correlated with BBB disruption in EAE mice and HBMECs.
- RGMa overexpression increased BBB permeability, while RGMa knockdown enhanced BBB integrity in vitro.
- RGMa-induced BBB dysfunction involves the BMP2/BMPRII/YAP pathway, leading to decreased tight junction proteins (ZO-1, claudin-5).
- Elevated serum RGMa levels were observed in MS patients, particularly those with active lesions.
Conclusions:
- RGMa drives BBB dysfunction in MS via the BMP2/BMPRII/YAP signaling cascade.
- RGMa represents a potential therapeutic target for managing BBB permeability in multiple sclerosis.

