PTEN knockdown with the Y444F mutant AAV2 vector promotes axonal regeneration in the adult optic nerve

The lack of axonal regeneration is the major cause of vision loss after optic nerve injury in adult mammals. Activating the PI3K/AKT/mTOR signaling pathway has been shown to enhance the intrinsic growth capacity of neurons and to facilitate axonal regeneration in the central nervous system after inj...

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Main Authors: Zheng-ru Huang, Hai-ying Chen, Zi-zhong Hu, Ping Xie, Qing-huai Liu
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2018-01-01
Series:Neural Regeneration Research
Subjects:
Online Access:http://www.nrronline.org/article.asp?issn=1673-5374;year=2018;volume=13;issue=1;spage=135;epage=144;aulast=Huang
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spelling doaj-527d3178734d4576a9b4ae7b4e7b60952020-11-25T03:26:38ZengWolters Kluwer Medknow PublicationsNeural Regeneration Research1673-53742018-01-0113113514410.4103/1673-5374.224381PTEN knockdown with the Y444F mutant AAV2 vector promotes axonal regeneration in the adult optic nerveZheng-ru HuangHai-ying ChenZi-zhong HuPing XieQing-huai LiuThe lack of axonal regeneration is the major cause of vision loss after optic nerve injury in adult mammals. Activating the PI3K/AKT/mTOR signaling pathway has been shown to enhance the intrinsic growth capacity of neurons and to facilitate axonal regeneration in the central nervous system after injury. The deletion of the mTOR negative regulator phosphatase and tensin homolog (PTEN) enhances regeneration of adult corticospinal neurons and ganglion cells. In the present study, we used a tyrosine-mutated (Y444F) AAV2 vector to efficiently express a short hairpin RNA (shRNA) for silencing PTEN expression in retinal ganglion cells. We evaluated cell survival and axonal regeneration in a rat model of optic nerve axotomy. The rats received an intravitreal injection of wildtype AAV2 or Y444F mutant AAV2 (both carrying shRNA to PTEN) 4 weeks before optic nerve axotomy. Compared with the wildtype AAV2 vector, the Y444F mutant AAV2 vector enhanced retinal ganglia cell survival and stimulated axonal regeneration to a greater extent 6 weeks after axotomy. Moreover, post-axotomy injection of the Y444F AAV2 vector expressing the shRNA to PTEN rescued ~19% of retinal ganglion cells and induced axons to regenerate near to the optic chiasm. Taken together, our results demonstrate that PTEN knockdown with the Y444F AAV2 vector promotes retinal ganglion cell survival and stimulates long-distance axonal regeneration after optic nerve axotomy. Therefore, the Y444F AAV2 vector might be a promising gene therapy tool for treating optic nerve injury.http://www.nrronline.org/article.asp?issn=1673-5374;year=2018;volume=13;issue=1;spage=135;epage=144;aulast=Huangnerve regeneration; optic nerve; axotomy; gene therapy; Mόller cell; retinal ganglion cell; AAV2; shRNA; PTEN; GLAST; mTOR; neural regeneration
collection DOAJ
language English
format Article
sources DOAJ
author Zheng-ru Huang
Hai-ying Chen
Zi-zhong Hu
Ping Xie
Qing-huai Liu
spellingShingle Zheng-ru Huang
Hai-ying Chen
Zi-zhong Hu
Ping Xie
Qing-huai Liu
PTEN knockdown with the Y444F mutant AAV2 vector promotes axonal regeneration in the adult optic nerve
Neural Regeneration Research
nerve regeneration; optic nerve; axotomy; gene therapy; Mόller cell; retinal ganglion cell; AAV2; shRNA; PTEN; GLAST; mTOR; neural regeneration
author_facet Zheng-ru Huang
Hai-ying Chen
Zi-zhong Hu
Ping Xie
Qing-huai Liu
author_sort Zheng-ru Huang
title PTEN knockdown with the Y444F mutant AAV2 vector promotes axonal regeneration in the adult optic nerve
title_short PTEN knockdown with the Y444F mutant AAV2 vector promotes axonal regeneration in the adult optic nerve
title_full PTEN knockdown with the Y444F mutant AAV2 vector promotes axonal regeneration in the adult optic nerve
title_fullStr PTEN knockdown with the Y444F mutant AAV2 vector promotes axonal regeneration in the adult optic nerve
title_full_unstemmed PTEN knockdown with the Y444F mutant AAV2 vector promotes axonal regeneration in the adult optic nerve
title_sort pten knockdown with the y444f mutant aav2 vector promotes axonal regeneration in the adult optic nerve
publisher Wolters Kluwer Medknow Publications
series Neural Regeneration Research
issn 1673-5374
publishDate 2018-01-01
description The lack of axonal regeneration is the major cause of vision loss after optic nerve injury in adult mammals. Activating the PI3K/AKT/mTOR signaling pathway has been shown to enhance the intrinsic growth capacity of neurons and to facilitate axonal regeneration in the central nervous system after injury. The deletion of the mTOR negative regulator phosphatase and tensin homolog (PTEN) enhances regeneration of adult corticospinal neurons and ganglion cells. In the present study, we used a tyrosine-mutated (Y444F) AAV2 vector to efficiently express a short hairpin RNA (shRNA) for silencing PTEN expression in retinal ganglion cells. We evaluated cell survival and axonal regeneration in a rat model of optic nerve axotomy. The rats received an intravitreal injection of wildtype AAV2 or Y444F mutant AAV2 (both carrying shRNA to PTEN) 4 weeks before optic nerve axotomy. Compared with the wildtype AAV2 vector, the Y444F mutant AAV2 vector enhanced retinal ganglia cell survival and stimulated axonal regeneration to a greater extent 6 weeks after axotomy. Moreover, post-axotomy injection of the Y444F AAV2 vector expressing the shRNA to PTEN rescued ~19% of retinal ganglion cells and induced axons to regenerate near to the optic chiasm. Taken together, our results demonstrate that PTEN knockdown with the Y444F AAV2 vector promotes retinal ganglion cell survival and stimulates long-distance axonal regeneration after optic nerve axotomy. Therefore, the Y444F AAV2 vector might be a promising gene therapy tool for treating optic nerve injury.
topic nerve regeneration; optic nerve; axotomy; gene therapy; Mόller cell; retinal ganglion cell; AAV2; shRNA; PTEN; GLAST; mTOR; neural regeneration
url http://www.nrronline.org/article.asp?issn=1673-5374;year=2018;volume=13;issue=1;spage=135;epage=144;aulast=Huang
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AT haiyingchen ptenknockdownwiththey444fmutantaav2vectorpromotesaxonalregenerationintheadultopticnerve
AT zizhonghu ptenknockdownwiththey444fmutantaav2vectorpromotesaxonalregenerationintheadultopticnerve
AT pingxie ptenknockdownwiththey444fmutantaav2vectorpromotesaxonalregenerationintheadultopticnerve
AT qinghuailiu ptenknockdownwiththey444fmutantaav2vectorpromotesaxonalregenerationintheadultopticnerve
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