Trk C signaling is required for retinal progenitor cell proliferation

被引:0
作者
Das, I
Sparrow, JR
Lin, MI
Shih, E
Mikawa, T
Hempstead, BL
机构
[1] Cornell Univ, Weill Med Coll, Dept Med, New York, NY 10021 USA
[2] Cornell Univ, Weill Med Coll, Dept Cell Biol, New York, NY 10021 USA
[3] Columbia Univ, Dept Ophthalmol, New York, NY 10032 USA
关键词
retina; NT-3; trk C; truncated trk C; retrovirus; chick; mitogen;
D O I
暂无
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Although neurotrophin actions in the survival of specific retinal cell types have been identified, the biological functions for neurotrophin-3 (NT-3) in early retinal development remain unclear. Having localized NT-3 and trk C expression at early developmental stages when retinal neuroepithelial progenitor cells predominate, we sought to modulate NT-3 signaling in these cells by overexpressing a truncated isoform of the NT-3 receptor, trk C. We have demonstrated that this non-catalytic receptor can inhibit NT-3 signaling when coexpressed with the full-length kinase-active trk C receptor. Using a replication-deficient retrovirus to ectopically express the truncated trk C receptor to limited numbers of progenitor cells in ovo, we examined the effects of disrupted trk C signaling on the proliferation or differentiation of retinal cells. Clones expressing truncated trk C exhibited a 70% reduction in clone size, compared with clones infected with a control virus, indicating that inhibition of trk C signaling decreased the clonal expansion of cells derived from a single retinal progenitor cell. Additionally, impaired NT-3 signaling resulted in a reduction of all retinal cell types, suggesting that NT-3 targets retinal precursor cells rather than differentiated cell types. BrdU labeling studies performed at E6 indicate that this reduction in cell number occurs through a decrease in cell proliferation. These studies suggest that NT-3 is an important mitogen early in retinal development and serves to establish the size of the progenitor pool from which all future differentiated cells arise.
引用
收藏
页码:2887 / 2895
页数:9
相关论文
共 50 条
  • [31] Pax6a and Pax6b are required at different points in neuronal progenitor cell proliferation during zebrafish photoreceptor regeneration
    Thummel, Ryan
    Enright, Jennifer M.
    Kassen, Sean C.
    Montgomery, Jacob E.
    Bailey, Travis J.
    Hyde, David R.
    EXPERIMENTAL EYE RESEARCH, 2010, 90 (05) : 572 - 582
  • [32] Ezh2 maintains retinal progenitor proliferation, transcriptional integrity, and the timing of late differentiation
    Zhang, Jianmin
    Taylor, Russell J.
    La Torre, Anna
    Wilken, Matthew S.
    Cox, Kristen E.
    Reh, Thomas A.
    Vetter, Monica L.
    DEVELOPMENTAL BIOLOGY, 2015, 403 (02) : 128 - 138
  • [33] Pleiotropic Functions of Pituitary Adenylyl Cyclase-Activating Polypeptide on Retinal Ontogenesis: Involvement of KLF4 in the Control of Progenitor Cell Proliferation
    Njaine, Brian
    Rocha-Martins, Mauricio
    Vieira-Vieira, Carlos H.
    Barbosa De-Melo, Luiz D.
    Linden, Rafael
    Braas, Karen
    May, Victor
    Martins, Rodrigo A. P.
    Silveira, Mariana S.
    JOURNAL OF MOLECULAR NEUROSCIENCE, 2014, 54 (03) : 430 - 442
  • [34] Pleiotropic Functions of Pituitary Adenylyl Cyclase-Activating Polypeptide on Retinal Ontogenesis: Involvement of KLF4 in the Control of Progenitor Cell Proliferation
    Brian Njaine
    Maurício Rocha-Martins
    Carlos H. Vieira-Vieira
    Luiz D. Barbosa De-Melo
    Rafael Linden
    Karen Braas
    Victor May
    Rodrigo A. P. Martins
    Mariana S. Silveira
    Journal of Molecular Neuroscience, 2014, 54 : 430 - 442
  • [35] Dicer is Required for the Maintenance of Notch Signaling and Gliogenic Competence During Mouse Retinal Development
    Georgi, Sean A.
    Reh, Thomas A.
    DEVELOPMENTAL NEUROBIOLOGY, 2011, 71 (12) : 1153 - 1169
  • [36] REGULATION OF RETINAL GLIAL-CELL PROLIFERATION BY ANTIPROLIFERATIVE MOLECULES
    IKEDA, T
    PURO, DG
    EXPERIMENTAL EYE RESEARCH, 1995, 60 (04) : 435 - 443
  • [37] Progenitor division and cell autonomous neurosecretion are required for rod photoreceptor sublaminar positioning
    Gurdita, Akshay
    Truong, Victor Q. B. Pham
    Dolati, Parnian
    Juric, Matey
    Tachibana, Nobuhiko
    Liu, Zhongda C.
    Ortin-Martinez, Arturo
    Ibrahimi, Mostafa
    Pokrajac, Nenad T.
    Comanita, Lacrimioara
    Pacal, Marek
    Huang, Mengjia
    Sugita, Shuzo
    Bremner, Rod
    Wallace, Valerie A.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2023, 120 (42)
  • [38] Cell Fate of Retinal Progenitor Cells: In Ovo UbC-StarTrack Analysis
    Olmos-Carreno, Cindy L.
    Figueres-Onate, Maria
    Scicolone, Gabriel E.
    Lopez-Mascaraque, Laura
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (20)
  • [39] In Situ Cross-linking Hydrogel as a Vehicle for Retinal Progenitor Cell Transplantation
    Park, Jeayoung
    Baranov, Petr
    Aydin, Aybike
    Abdelgawad, Hany
    Singh, Deepti
    Niu, Wanting
    Kurisawa, Motoichi
    Spector, Myron
    Young, Michael J.
    CELL TRANSPLANTATION, 2019, 28 (05) : 596 - 606
  • [40] Suppression of Hedgehog signaling by Cul3 ligases in proliferation control of retinal precursors
    Ou, Chan-Yen
    Wang, Chien-Hsiang
    Jiang, Jin
    Chien, Cheng-Ting
    DEVELOPMENTAL BIOLOGY, 2007, 308 (01) : 106 - 119