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Organoid Modeling and Single-Cell Profiling Reveal Smooth Muscle Cell Migration in Moyamoya Disease
Shihao He1,2,3, Junze Zhang4,5, Xilong Wang4,5
1Department of Neurosurgery, Beijing Tiantan Hospital, Capital Medical University, Beijing, China. heshihaoo@outlook.com.
Abstract:
Moyamoya disease (MMD) is a cerebrovascular disorder characterized by progressive intracranial arterial stenosis, which can lead to ischemic or hemorrhagic stroke. However, its pathogenesis remains poorly understood, limiting advances in the diagnosis and treatment of MMD. We perform data-independent acquisition (DIA) proteomics on serum samples from 40 MMD patients and 20 healthy controls, followed by ELISA validation of an additional 45 cohort. Vascular organoids are generated from induced pluripotent stem cells (iPSCs) derived from the peripheral blood, and analyzed using histological staining, transcriptomics, and single-cell RNA sequencing (scRNA-seq). Histological examination of the temporal superficial artery (STA) in MMD patients reveals abnormal accumulation of vascular smooth muscle cells (VSMCs). DIA proteomics identify significant upregulation of TUBA4A and TUBB4B in MMD serum. In vitro assays demonstrate that these tubulin proteins promoted VSMC proliferation, migration, and contractile-to-synthetic phenotypic switching through the GJA1/PI3K/AKT/KLF4 signaling pathway. Single-cell RNA sequencing of MMD vascular organoids shows an increased proportion of synthetic VSMCs with upregulated TUBA4A and TUBB4B expression. Our findings suggest that overexpression of TUBA4A and TUBB4B contributes to pathological vascular remodeling in MMD through the GJA1/PI3K/AKT/KLF4 pathway, as well as therapeutic targets for intervention in MMD vascular remodeling.
Insights
Moyamoya disease (MMD) involves abnormal blood vessel growth. Researchers found that elevated tubulin proteins TUBA4A and TUBB4B contribute to MMD progression by affecting vascular smooth muscle cells, offering potential therapeutic targets.
Area of Science:
- Neuroscience
- Vascular Biology
- Proteomics
Background:
- Moyamoya disease (MMD) is a cerebrovascular disorder causing progressive intracranial arterial stenosis, leading to stroke.
- The underlying pathogenesis of MMD is not fully understood, hindering effective diagnosis and treatment.
Purpose of the Study:
- To investigate the molecular mechanisms and identify potential biomarkers and therapeutic targets for Moyamoya disease.
Main Methods:
- Data-independent acquisition (DIA) proteomics on serum from MMD patients and controls.
- ELISA validation, vascular organoid generation from induced pluripotent stem cells (iPSCs), histological staining, transcriptomics, and single-cell RNA sequencing (scRNA-seq).
Main Results:
- Abnormal accumulation of vascular smooth muscle cells (VSMCs) in MMD patient arteries.
- Significant upregulation of TUBA4A and TUBB4B in MMD serum.
- TUBA4A and TUBB4B promote VSMC proliferation, migration, and phenotypic switching via the GJA1/PI3K/AKT/KLF4 pathway.
- MMD vascular organoids show increased synthetic VSMCs with elevated TUBA4A and TUBB4B.
Conclusions:
- Overexpression of TUBA4A and TUBB4B contributes to pathological vascular remodeling in MMD.
- The GJA1/PI3K/AKT/KLF4 pathway is implicated in MMD pathogenesis.
- TUBA4A and TUBB4B represent potential therapeutic targets for MMD intervention.
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