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April 11, 2026Science2 citations

Luminal surface proteome of the brain vasculature uncovers blood-brain barrier regulators

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ZZZijian ZhuZJZuzhi JiangYWYupu Wang

Key Points

  • The research aims to identify and characterize proteins on the brain vasculature luminal surface involved in blood-brain barrier integrity.
  • Utilized proteomic profiling techniques for in vivo analysis of mouse brain vasculature.
  • Employed quantitative mass spectrometry to assess the proteome at different developmental stages.
  • Conducted genetic perturbation experiments to examine the role of specific proteins.
  • Identified SLC7A1 and NOS3 as crucial for blood-brain barrier integrity in neonates but not in adults.
  • Demonstrated that HYAL2 is essential for maintaining barrier integrity throughout the lifespan.
  • Showed a dynamic evolution of the vasculature luminal surface proteome from development to aging.

Abstract

At the blood-tissue interface, vasculature luminal surface is critical for molecular transport, signaling transduction, and cell extravasation. Here, we present a method for proteomic profiling of the vasculature luminal surface in vivo, broadly applicable to any vertebrate. Quantitative mass spectrometry revealed the luminal surface proteome of the mouse brain vasculature and its temporal evolution from development to aging. In vivo genetic perturbation found that the arginine transporter SLC7A1 and the nitric oxide synthase NOS3 are needed for blood-brain barrier integrity in neonatal but not adult mice, whereas the hyaluronan degradation enzyme HYAL2 safeguards the barrier throughout the lifespan. By characterizing the proteomic dynamics of the vasculature luminal surface, the study links the metabolism of nitric oxide and hyaluronan to blood-brain barrier integrity.

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Cite This Study

Zhu et al. (2026) studied this question.

synapsesocial.com/papers/69d9e5ec78050d08c1b76315https://doi.org/10.1126/science.aea2100
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