Literature DB >> 30478038

Interplay of the Norrin and Wnt7a/Wnt7b signaling systems in blood-brain barrier and blood-retina barrier development and maintenance.

Yanshu Wang1,2, Chris Cho1, John Williams1,2, Philip M Smallwood1,2, Chi Zhang3, Harald J Junge3, Jeremy Nathans4,2,5,6.   

Abstract

β-Catenin signaling controls the development and maintenance of the blood-brain barrier (BBB) and the blood-retina barrier (BRB), but the division of labor and degree of redundancy between the two principal ligand-receptor systems-the Norrin and Wnt7a/Wnt7b systems-are incompletely defined. Here, we present a loss-of-function genetic analysis of postnatal BBB and BRB maintenance in mice that shows striking threshold and partial redundancy effects. In particular, the combined loss of Wnt7a and Norrin or Wnt7a and Frizzled4 (Fz4) leads to anatomically localized BBB defects that are far more severe than observed with loss of Wnt7a, Norrin, or Fz4 alone. In the cerebellum, selective loss of Wnt7a in glia combined with ubiquitous loss of Norrin recapitulates the phenotype observed with ubiquitous loss of both Wnt7a and Norrin, implying that glia are the source of Wnt7a in the cerebellum. Tspan12, a coactivator of Norrin signaling in the retina, is also active in BBB maintenance but is less potent than Norrin, consistent with a model in which Tspan12 enhances the amplitude of the Norrin signal in vascular endothelial cells. Finally, in the context of a partially impaired Norrin system, the retina reveals a small contribution to BRB development from the Wnt7a/Wnt7b system. Taken together, these experiments define the extent of CNS region-specific cooperation for several components of the Norrin and Wnt7a/Wnt7b systems, and they reveal substantial regional heterogeneity in the extent to which partially redundant ligands, receptors, and coactivators maintain the BBB and BRB.

Entities:  

Keywords:  central nervous system; mouse genetics; vascular endothelial cells; β-catenin signaling

Mesh:

Substances:

Year:  2018        PMID: 30478038      PMCID: PMC6294914          DOI: 10.1073/pnas.1813217115

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  54 in total

1.  Beta-catenin signaling regulates barrier-specific gene expression in circumventricular organ and ocular vasculatures.

Authors:  Yanshu Wang; Mark F Sabbagh; Xiaowu Gu; Amir Rattner; John Williams; Jeremy Nathans
Journal:  Elife       Date:  2019-04-01       Impact factor: 8.140

2.  Deficiency of MFSD7c results in microcephaly-associated vasculopathy in Fowler syndrome.

Authors:  Pazhanichamy Kalailingam; Kai Qi Wang; Xiu Ru Toh; Toan Q Nguyen; Madhuvanthi Chandrakanthan; Zafrul Hasan; Clair Habib; Aharon Schif; Francesca Clementina Radio; Bruno Dallapiccola; Karin Weiss; Long N Nguyen
Journal:  J Clin Invest       Date:  2020-08-03       Impact factor: 14.808

3.  Germ-line genetic variation in the immunoglobulin heavy chain creates stroke susceptibility in the spontaneously hypertensive rat.

Authors:  Isha S Dhande; Sterling C Kneedler; Aniket S Joshi; Yaming Zhu; M John Hicks; Scott E Wenderfer; Michael C Braun; Peter A Doris
Journal:  Physiol Genomics       Date:  2019-10-14       Impact factor: 3.107

4.  Roles of HIFs and VEGF in angiogenesis in the retina and brain.

Authors:  Amir Rattner; John Williams; Jeremy Nathans
Journal:  J Clin Invest       Date:  2019-08-12       Impact factor: 14.808

5.  Sphingosine 1-Phosphate Receptor Signaling Establishes AP-1 Gradients to Allow for Retinal Endothelial Cell Specialization.

Authors:  Keisuke Yanagida; Eric Engelbrecht; Colin Niaudet; Bongnam Jung; Konstantin Gaengel; Kristina Holton; Steven Swendeman; Catherine H Liu; Michel V Levesque; Andrew Kuo; Zhongjie Fu; Lois E H Smith; Christer Betsholtz; Timothy Hla
Journal:  Dev Cell       Date:  2020-02-13       Impact factor: 12.270

6.  A mouse model for kinesin family member 11 (Kif11)-associated familial exudative vitreoretinopathy.

Authors:  Yanshu Wang; Philip M Smallwood; John Williams; Jeremy Nathans
Journal:  Hum Mol Genet       Date:  2020-05-08       Impact factor: 6.150

7.  Wnt-Dependent Oligodendroglial-Endothelial Interactions Regulate White Matter Vascularization and Attenuate Injury.

Authors:  Manideep Chavali; Maria José Ulloa-Navas; Pedro Pérez-Borredá; Jose Manuel Garcia-Verdugo; Patrick S McQuillen; Eric J Huang; David H Rowitch
Journal:  Neuron       Date:  2020-10-20       Impact factor: 17.173

8.  Norrin restores blood-retinal barrier properties after vascular endothelial growth factor-induced permeability.

Authors:  Mónica Díaz-Coránguez; Cheng-Mao Lin; Stefan Liebner; David A Antonetti
Journal:  J Biol Chem       Date:  2020-02-21       Impact factor: 5.157

Review 9.  Development and Cell Biology of the Blood-Brain Barrier.

Authors:  Urs H Langen; Swathi Ayloo; Chenghua Gu
Journal:  Annu Rev Cell Dev Biol       Date:  2019-07-12       Impact factor: 13.827

Review 10.  Neuronal regulation of the blood-brain barrier and neurovascular coupling.

Authors:  Luke Kaplan; Brian W Chow; Chenghua Gu
Journal:  Nat Rev Neurosci       Date:  2020-07-07       Impact factor: 34.870

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