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Kif5a Regulates Mitochondrial Transport in Developing Retinal Ganglion Cells In Vitro

PURPOSE: Axon transport of organelles and neurotrophic factors is necessary for maintaining cellular function and survival of retinal ganglion cells (RGCs). However, it is not clear how trafficking of mitochondria, essential for RGC growth and maturation, changes during RGC development. The purpose...

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Autores principales: Yokota, Satoshi, Shah, Sahil H., Huie, Emma Lee, Wen, Runxia Rain, Luo, Ziming, Goldberg, Jeffrey L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Association for Research in Vision and Ophthalmology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9983700/
https://www.ncbi.nlm.nih.gov/pubmed/36862119
http://dx.doi.org/10.1167/iovs.64.3.4
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author Yokota, Satoshi
Shah, Sahil H.
Huie, Emma Lee
Wen, Runxia Rain
Luo, Ziming
Goldberg, Jeffrey L.
author_facet Yokota, Satoshi
Shah, Sahil H.
Huie, Emma Lee
Wen, Runxia Rain
Luo, Ziming
Goldberg, Jeffrey L.
author_sort Yokota, Satoshi
collection PubMed
description PURPOSE: Axon transport of organelles and neurotrophic factors is necessary for maintaining cellular function and survival of retinal ganglion cells (RGCs). However, it is not clear how trafficking of mitochondria, essential for RGC growth and maturation, changes during RGC development. The purpose of this study was to understand the dynamics and regulation of mitochondrial transport during RGC maturation using acutely purified RGCs as a model system. METHODS: Primary RGCs were immunopanned from rats of either sex during three stages of development. MitoTracker dye and live-cell imaging were used to quantify mitochondrial motility. Analysis of single-cell RNA sequencing was used to identify Kinesin family member 5A (Kif5a) as a relevant motor candidate for mitochondrial transport. Kif5a expression was manipulated with either short hairpin RNA (shRNA) or exogenous expression adeno-associated virus viral vectors. RESULTS: Anterograde and retrograde mitochondrial trafficking and motility decreased through RGC development. Similarly, the expression of Kif5a, a motor protein that transports mitochondria, also decreased during development. Kif5a knockdown decreased anterograde mitochondrial transport, while Kif5a expression increased general mitochondrial motility and anterograde mitochondrial transport. CONCLUSIONS: Our results suggested that Kif5a directly regulates mitochondrial axonal transport in developing RGCs. Future work exploring the role of Kif5a in vivo in RGCs is indicated.
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spelling pubmed-99837002023-03-04 Kif5a Regulates Mitochondrial Transport in Developing Retinal Ganglion Cells In Vitro Yokota, Satoshi Shah, Sahil H. Huie, Emma Lee Wen, Runxia Rain Luo, Ziming Goldberg, Jeffrey L. Invest Ophthalmol Vis Sci Retinal Cell Biology PURPOSE: Axon transport of organelles and neurotrophic factors is necessary for maintaining cellular function and survival of retinal ganglion cells (RGCs). However, it is not clear how trafficking of mitochondria, essential for RGC growth and maturation, changes during RGC development. The purpose of this study was to understand the dynamics and regulation of mitochondrial transport during RGC maturation using acutely purified RGCs as a model system. METHODS: Primary RGCs were immunopanned from rats of either sex during three stages of development. MitoTracker dye and live-cell imaging were used to quantify mitochondrial motility. Analysis of single-cell RNA sequencing was used to identify Kinesin family member 5A (Kif5a) as a relevant motor candidate for mitochondrial transport. Kif5a expression was manipulated with either short hairpin RNA (shRNA) or exogenous expression adeno-associated virus viral vectors. RESULTS: Anterograde and retrograde mitochondrial trafficking and motility decreased through RGC development. Similarly, the expression of Kif5a, a motor protein that transports mitochondria, also decreased during development. Kif5a knockdown decreased anterograde mitochondrial transport, while Kif5a expression increased general mitochondrial motility and anterograde mitochondrial transport. CONCLUSIONS: Our results suggested that Kif5a directly regulates mitochondrial axonal transport in developing RGCs. Future work exploring the role of Kif5a in vivo in RGCs is indicated. The Association for Research in Vision and Ophthalmology 2023-03-02 /pmc/articles/PMC9983700/ /pubmed/36862119 http://dx.doi.org/10.1167/iovs.64.3.4 Text en Copyright 2023 The Authors https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License.
spellingShingle Retinal Cell Biology
Yokota, Satoshi
Shah, Sahil H.
Huie, Emma Lee
Wen, Runxia Rain
Luo, Ziming
Goldberg, Jeffrey L.
Kif5a Regulates Mitochondrial Transport in Developing Retinal Ganglion Cells In Vitro
title Kif5a Regulates Mitochondrial Transport in Developing Retinal Ganglion Cells In Vitro
title_full Kif5a Regulates Mitochondrial Transport in Developing Retinal Ganglion Cells In Vitro
title_fullStr Kif5a Regulates Mitochondrial Transport in Developing Retinal Ganglion Cells In Vitro
title_full_unstemmed Kif5a Regulates Mitochondrial Transport in Developing Retinal Ganglion Cells In Vitro
title_short Kif5a Regulates Mitochondrial Transport in Developing Retinal Ganglion Cells In Vitro
title_sort kif5a regulates mitochondrial transport in developing retinal ganglion cells in vitro
topic Retinal Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9983700/
https://www.ncbi.nlm.nih.gov/pubmed/36862119
http://dx.doi.org/10.1167/iovs.64.3.4
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