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1.
Proc Natl Acad Sci U S A ; 120(42): e2308204120, 2023 10 17.
Article in English | MEDLINE | ID: mdl-37812728

ABSTRACT

Migration is essential for the laminar stratification and connectivity of neurons in the central nervous system. In the retina, photoreceptors (PRs) migrate to positions according to birthdate, with early-born cells localizing to the basal-most side of the outer nuclear layer. It was proposed that apical progenitor mitoses physically drive these basal translocations non-cell autonomously, but direct evidence is lacking, and whether other mechanisms participate is unknown. Here, combining loss- or gain-of-function assays to manipulate cell cycle regulators (Sonic hedgehog, Cdkn1a/p21) with an in vivo lentiviral labelling strategy, we demonstrate that progenitor division is one of two forces driving basal translocation of rod soma. Indeed, replacing Shh activity rescues abnormal rod translocation in retinal explants. Unexpectedly, we show that rod differentiation also promotes rod soma translocation. While outer segment function or formation is dispensable, Crx and SNARE-dependent synaptic function are essential. Thus, both non-cell and cell autonomous mechanisms underpin PR soma sublaminar positioning in the mammalian retina.


Subject(s)
Neurosecretion , Retinal Rod Photoreceptor Cells , Animals , Retinal Rod Photoreceptor Cells/metabolism , Hedgehog Proteins/metabolism , Retina/metabolism , Cell Differentiation , Mammals
2.
EMBO J ; 40(22): e107264, 2021 11 15.
Article in English | MEDLINE | ID: mdl-34494680

ABSTRACT

Emerging evidence suggests that intracellular molecules and organelles transfer between cells during embryonic development, tissue homeostasis and disease. We and others recently showed that transplanted and host photoreceptors engage in bidirectional transfer of intracellular material in the recipient retina, a process termed material transfer (MT). We used cell transplantation, advanced tissue imaging approaches, genetic and pharmacologic interventions and primary cell culture to characterize and elucidate the mechanism of MT. We show that MT correlates with donor cell persistence and the accumulation of donor-derived proteins, mitochondria and transcripts in acceptor cells in vivo. MT requires cell contact in vitro and is associated with the formation of stable microtubule-containing protrusions, termed photoreceptor nanotubes (Ph NTs), that connect donor and host cells in vivo and in vitro. Ph NTs mediate GFP transfer between connected cells in vitro. Furthermore, interfering with Ph NT outgrowth by targeting Rho GTPase-dependent actin remodelling inhibits MT in vivo. Collectively, our observations provide evidence for horizontal exchange of intracellular material via nanotube-like connections between neurons in vivo.


Subject(s)
Photoreceptor Cells, Vertebrate/metabolism , Photoreceptor Cells, Vertebrate/ultrastructure , Retina/cytology , Actins/metabolism , Animals , Biological Transport , Cell Survival , Extracellular Vesicles , Female , Green Fluorescent Proteins/genetics , Green Fluorescent Proteins/metabolism , Humans , Male , Mice, Inbred C57BL , Mice, Transgenic , Mitochondria/metabolism , Retina/physiology , Retinoblastoma/metabolism , Retinoblastoma/pathology , Transducin/metabolism , rho GTP-Binding Proteins/genetics , rho GTP-Binding Proteins/metabolism
3.
iScience ; 24(8): 102905, 2021 Aug 20.
Article in English | MEDLINE | ID: mdl-34430805

ABSTRACT

The mouse eye is used to model central nervous system development, pathology, angiogenesis, tumorigenesis, and regenerative therapies. To facilitate the analysis of these processes, we developed an optimized tissue clearing and depigmentation protocol, termed InVision, that permits whole-eye fluorescent marker tissue imaging. We validated this method for the analysis of normal and degenerative retinal architecture, transgenic fluorescent reporter expression, immunostaining and three-dimensional volumetric (3DV) analysis of retinoblastoma and angiogenesis. We also used this method to characterize material transfer (MT), a recently described phenomenon of horizontal protein exchange that occurs between transplanted and recipient photoreceptors. 3D spatial distribution analysis of MT in transplanted retinas suggests that MT of cytoplasmic GFP between photoreceptors is mediated by short-range, proximity-dependent cellular interactions. The InVision protocol will allow investigators working across multiple cell biological disciplines to generate novel insights into the local cellular networks involved in cell biological processes in the eye.

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