Endothelial cell-type-specific molecular requirements for angiogenesis drive fenestrated vessel development in the brain

被引:26
|
作者
Parab, Sweta [1 ,2 ]
Quick, Rachael E. [1 ,2 ]
Matsuoka, Ryota L. [1 ,2 ]
机构
[1] Cleveland Clin, Lerner Res Inst, Dept Cardiovasc & Metab Sci, Cleveland, OH 44106 USA
[2] Case Western Reserve Univ, Lerner Coll Med, Cleveland Clin, Cleveland, OH 44106 USA
来源
ELIFE | 2021年 / 10卷
关键词
VASCULAR DEVELOPMENT; CNS ANGIOGENESIS; CHOROID-PLEXUS; NEURAL CREST; ZEBRAFISH; BARRIER; CCBE1; VEGF; EXPRESSION; TRAFFICKING;
D O I
10.7554/eLife.64295
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Vascular endothelial cells (vECs) in the brain exhibit structural and functional heterogeneity. Fenestrated, permeable brain vasculature mediates neuroendocrine function, body-fluid regulation, and neural immune responses; however, its vascular formation remains poorly understood. Here, we show that specific combinations of vascular endothelial growth factors (Vegfs) are required to selectively drive fenestrated vessel formation in the zebrafish myelencephalic choroid plexus (mCP). We found that the combined, but not individual, loss of Vegfab, Vegfc, and Vegfd causes severely impaired mCP vascularization with little effect on neighboring non-fenestrated brain vessel formation, demonstrating fenestrated-vEC-specific angiogenic requirements. This Vegfs-mediated vessel-selective patterning also involves Ccbe1. Expression analyses, cell-type-specific ablation, and paracrine activity-deficient Vegfc mutant characterization suggest that vEC-autonomous Vegfc and meningeal fibroblast-derived Vegfab and Vegfd are critical for mCP vascularization. These results define molecular cues and cell types critical for directing fenestrated CP vascularization and indicate that vECs' distinct molecular requirements for angiogenesis underlie brain vessel heterogeneity.
引用
收藏
页码:1 / 33
页数:33
相关论文
共 50 条
  • [41] Deep learning predicts the impact of regulatory variants on cell-type-specific enhancers in the brain
    Zheng, An
    Shen, Zeyang
    Glass, Christopher K.
    Gymrek, Melissa
    BIOINFORMATICS ADVANCES, 2023, 3 (01):
  • [42] Cell-type-specific aging clocks to quantify aging and rejuvenation in neurogenic regions of the brain
    Matthew T. Buckley
    Eric D. Sun
    Benson M. George
    Ling Liu
    Nicholas Schaum
    Lucy Xu
    Jaime M. Reyes
    Margaret A. Goodell
    Irving L. Weissman
    Tony Wyss-Coray
    Thomas A. Rando
    Anne Brunet
    Nature Aging, 2023, 3 : 121 - 137
  • [43] Large-scale cell-type-specific imaging of protein synthesis in a vertebrate brain
    Shahar, Or David
    Schuman, Erin Margaret
    ELIFE, 2020, 9
  • [44] EFFECTS OF CARVEDILOL ON MIGRATION, ANGIOGENESIS, AND ERK ACTIVATION DEPEND ON THE BLOOD VESSEL AND ENDOTHELIAL CELL TYPE
    Zambrano, A.
    Guillem-Llobat, P.
    Monto, F.
    Noguera, M. A.
    Ivorra, M. D.
    D'Ocon, P.
    BASIC & CLINICAL PHARMACOLOGY & TOXICOLOGY, 2018, 123 : 29 - 29
  • [45] Cell-type-specific hypothalamic pathways to brainstem drive context-dependent strategies in response to stressors
    Ahmadlou, Mehran
    Giannouli, Maria
    Vierbergen, Jacqueline F. M. van
    Leeuwen, Tom van
    Bloem, Wouter
    Houba, Janou H. W.
    Shirazi, Maryam Yasamin
    Cazemier, J. Leonie
    Haak, Robin
    Dubey, Mohit
    Winter, Fred de
    Heimel, J. Alexander
    CURRENT BIOLOGY, 2024, 34 (11) : 2448 - 2459.e4
  • [46] MOLECULAR-BASIS OF THE LITTLE MOUSE PHENOTYPE AND IMPLICATIONS FOR CELL-TYPE-SPECIFIC GROWTH
    LIN, SC
    LIN, CJR
    GUKOVSKY, I
    LUSIS, AJ
    SAWCHENKO, PE
    ROSENFELD, MG
    NATURE, 1993, 364 (6434) : 208 - 213
  • [47] Cryopreservation-induced delayed injury and cell-type-specific responses during the cryopreservation of endothelial cell monolayers
    Yu, Minghan
    Marquez-Curtis, Leah A.
    Elliott, Janet A. W.
    CRYOBIOLOGY, 2024, 115
  • [48] Single-nucleus transcriptome analysis reveals cell-type-specific molecular signatures across reward circuitry in the human brain
    Tran, Matthew N.
    Maynard, Kristen R.
    Spangler, Abby
    Huuki, Louise A.
    Montgomery, Kelsey D.
    Sadashivaiah, Vijay
    Tippani, Madhavi
    Barry, Brianna K.
    Hancock, Dana B.
    Hicks, Stephanie C.
    Kleinman, Joel E.
    Hyde, Thomas M.
    Collado-Torres, Leonardo
    Jaffe, Andrew E.
    Martinowich, Keri
    NEURON, 2021, 109 (19) : 3088 - +
  • [49] Cell-type-specific processing of the amyloid precursor protein by Presenilin during Drosophila development
    Loewer, A
    Soba, P
    Beyreuther, K
    Paro, R
    Merdes, G
    EMBO REPORTS, 2004, 5 (04) : 405 - 411
  • [50] CELL-TYPE-SPECIFIC MODULATION OF ANTIOXIDANT ENZYMES DURING HAMSTER-KIDNEY DEVELOPMENT
    OBERLEY, TD
    FREE RADICAL BIOLOGY AND MEDICINE, 1993, 15 (05) : 536 - 536