Collagen IV deficiency causes hypertrophic remodeling and endothelium-dependent hyperpolarization in small vessel disease with intracerebral hemorrhage

Genetic variants in COL4A1 and COL4A2 (encoding collagen IV alpha chain 1/2) occur in genetic and sporadic forms of cerebral small vessel disease (CSVD), a leading cause of stroke, dementia and intracerebral haemorrhage (ICH). However, the molecular mechanisms of CSVD with ICH and COL4A1/COL4A2 vari...

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Veröffentlicht in:EBioMedicine 2024-09, Vol.107, p.105315, Article 105315
Hauptverfasser: McNeilly, Sarah, Thomson, Cameron R., Gonzalez-Trueba, Laura, Sin, Yuan Yan, Granata, Alessandra, Hamilton, Graham, Lee, Michelle, Boland, Erin, McClure, John D., Lumbreras-Perales, Cristina, Aman, Alisha, Kumar, Apoorva A., Cantini, Marco, Gök, Caglar, Graham, Delyth, Tomono, Yasuko, Anderson, Christopher D., Lu, Yinhui, Smith, Colin, Markus, Hugh S., Abramowicz, Marc, Vilain, Catheline, Al-Shahi Salman, Rustam, Salmeron-Sanchez, Manuel, Hainsworth, Atticus H., Fuller, William, Kadler, Karl E., Bulleid, Neil J., Van Agtmael, Tom
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Sprache:eng
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Zusammenfassung:Genetic variants in COL4A1 and COL4A2 (encoding collagen IV alpha chain 1/2) occur in genetic and sporadic forms of cerebral small vessel disease (CSVD), a leading cause of stroke, dementia and intracerebral haemorrhage (ICH). However, the molecular mechanisms of CSVD with ICH and COL4A1/COL4A2 variants remain obscure. Vascular function and molecular investigations in mice with a Col4a1 missense mutation and heterozygous Col4a2 knock-out mice were combined with analysis of human brain endothelial cells harboring COL4A1/COL4A2 mutations, and brain tissue of patients with sporadic CSVD with ICH. Col4a1 missense mutations cause early-onset CSVD independent of hypertension, with enhanced vasodilation of small arteries due to endothelial dysfunction, vascular wall thickening and reduced stiffness. Mechanistically, the early-onset dysregulated endothelium-dependent hyperpolarization (EDH) is due to reduced collagen IV levels with elevated activity and levels of endothelial Ca2+-sensitive K+ channels. This results in vasodilation via the Na/K pump in vascular smooth muscle cells. Our data support this endothelial dysfunction preceding development of CSVD-associated ICH is due to increased cytoplasmic Ca2+ levels in endothelial cells. Moreover, cerebral blood vessels of patients with sporadic CSVD show genotype-dependent mechanisms with wall thickening and lower collagen IV levels in those harboring common non-coding COL4A1/COL4A2 risk alleles. COL4A1/COL4A2 variants act in genetic and sporadic CSVD with ICH via dysregulated EDH, and altered vascular wall thickness and biomechanics due to lower collagen IV levels and/or mutant collagen IV secretion. These data highlight EDH and collagen IV levels as potential treatment targets. MRC, Wellcome Trust, BHF.
ISSN:2352-3964
2352-3964
DOI:10.1016/j.ebiom.2024.105315