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LRP1 in vascular mural cells modulates cerebrovascular integrity and function in the presence of APOE4
Hiroshi Oue, … , Guojun Bu, Takahisa Kanekiyo
Hiroshi Oue, … , Guojun Bu, Takahisa Kanekiyo
Published April 10, 2023
Citation Information: JCI Insight. 2023;8(7):e163822. https://doi.org/10.1172/jci.insight.163822.
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Research Article Neuroscience

LRP1 in vascular mural cells modulates cerebrovascular integrity and function in the presence of APOE4

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Abstract

Cerebrovasculature is critical in maintaining brain homeostasis; its dysregulation often leads to vascular cognitive impairment and dementia (VCID) during aging. VCID is the second most prevalent cause of dementia in the elderly, after Alzheimer’s disease (AD), with frequent cooccurrence of VCID and AD. While multiple factors are involved in the pathogenesis of AD and VCID, APOE4 increases the risk for both diseases. A major apolipoprotein E (apoE) receptor, the low-density lipoprotein receptor-related protein 1 (LRP1), is abundantly expressed in vascular mural cells (pericytes and smooth muscle cells). Here, we investigated how deficiency of vascular mural cell LRP1 affects the cerebrovascular system and cognitive performance using vascular mural cell–specific Lrp1-KO mice (smLrp1–/–) in a human APOE3 or APOE4 background. We found that spatial memory was impaired in the 13- to 16-month-old APOE4 smLrp1–/– mice but not in the APOE3 smLrp1–/– mice, compared with their respective littermate control mice. These disruptions in the APOE4 smLrp1–/– mice were accompanied with excess paravascular glial activation and reduced cerebrovascular collagen IV. In addition, blood-brain barrier (BBB) integrity was disrupted in the APOE4 smLrp1–/– mice. Together, our results suggest that vascular mural cell LRP1 modulates cerebrovasculature integrity and function in an APOE genotype–dependent manner.

Authors

Hiroshi Oue, Yu Yamazaki, Wenhui Qiao, Chen Yuanxin, Yingxue Ren, Aishe Kurti, Francis Shue, Tammee M. Parsons, Ralph B. Perkerson, Keiji Kawatani, Ni Wang, Skylar C. Starling, Bhaskar Roy, Ioana-Emilia Mosneag, Tomonori Aikawa, Marie-Louise Holm, Chia-Chen Liu, Yasuteru Inoue, Patrick M. Sullivan, Yan W. Asmann, Betty Y.S. Kim, Guojun Bu, Takahisa Kanekiyo

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Figure 2

LRP1 deletion in vascular mural cells exacerbates neuroinflammation in the mice with APOE4.

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LRP1 deletion in vascular mural cells exacerbates neuroinflammation in t...
Transcriptomes in the cortical samples from 13- to 16-month-old male APOE3 control, APOE3 smLrp1–/–, APOE4 control, and APOE4 smLrp1–/– mice were assessed through RNA-Seq (n = 5/group). (A) Venn diagram of the DEGs affected by LRP1 deletion in vascular mural cells in the mice with APOE3 and APOE4 background (P < 0.01, |fold change| > 1.5) is shown. (B–E) Top 10 DEGs in the mice with APOE3 (B) and APOE4 (C) background, and GO terms changed with P < 0.05 in the mice with APOE3 (D) and APOE4 (E) background are shown. (F and G) Effects of LRP1 deletion in vascular mural cells on the transcriptome expression of selected marker genes for major brain cell types (astrocyte, endothelial cell, microglia, neuron, and oligodendrocyte) as well as vascular mural cell types, including pericyte/venous smooth muscle cell (vSMC), arterial SMC (aSMC)/arteriole SMC (aaSMC), and fibroblast-like cells through the RNA-Seq data in the mice with APOE3 (F) and APOE4 (G) background are shown. Horizontal lines, boxes, and whiskers correspond to median, interquartile range (IQR), and minimum/maximum, respectively. *P < 0.05; **P < 0.01.

Copyright © 2023 American Society for Clinical Investigation
ISSN 2379-3708

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