Mouse γ-Synuclein Promoter-Mediated Gene Expression and Editing in Mammalian Retinal Ganglion Cells

Экспрессия и редактирование генов, опосредованные промотором γ-синуклеина мыши, в ганглиозных клетках сетчатки млекопитающих
Qizhao Wang, Pei Zhuang, Haoliang Huang, Liang Li, Liang Liu, Hannah C. Webber, Roopa Dalal, Leonard Siew, Clarisse M. Fligor, Kun‐Che Chang, Michael Nahmou, Alexander Kreymerman, Yang Sun, Jason S. Meyer, Jeffrey L. Goldberg, Yang Hu
2020-04-16

AAV-mediated gene transferCRISPR/Cas9 gene editingoptic neuropathiesretinal ganglion cellsγ-synuclein promoter
Optic neuropathies are a group of optic nerve (ON) diseases caused by various insults including glaucoma, inflammation, ischemia, trauma, and genetic deficits, which are characterized by retinal ganglion cell (RGC) death and ON degeneration. An increasing number of genes involved in RGC intrinsic signaling have been found to be promising neural repair targets that can potentially be modulated directly by gene therapy, if we can achieve RGC specific gene targeting. To address this challenge, we first used adeno-associated virus (AAV)-mediated gene transfer to perform a low-throughputin vivoscreening in both male and female mouse eyes and identified the mouse γ-synuclein (mSncg) promoter, which specifically and potently sustained transgene expression in mouse RGCs and also works in human RGCs. We further demonstrated that gene therapy that combines AAV-mSncg promoter with clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9 gene editing can knock down pro-degenerative genes in RGCs and provide effective neuroprotection in optic neuropathies. SIGNIFICANCE STATEMENTHere, we present an RGC-specific promoter, mouse γ-synuclein (mSncg) promoter, and perform extensive characterization and proof-of-concept studies of mSncg promoter-mediated gene expression and clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9 gene editing in RGCsin vivo. To our knowledge, this is the first report demonstratingin vivoneuroprotection of injured RGCs and optic nerve (ON) by AAV-mediated CRISPR/Cas9 inhibition of genes that are critical for neurodegeneration. It represents a powerful tool to achieve RGC-specific gene modulation, and also opens up a promising gene therapy strategy for optic neuropathies, the most common form of eye diseases that cause irreversible blindness.
1
AAV-mediated CRISPR/Cas9 inhibition of neurodegeneration-related genes provided effective neuroprotection for injured retinal ganglion cells and optic nerves.
2
AAV-mediated in vivo screening identified the mouse γ-synuclein promoter as a potent, sustained, and RGC-specific promoter in mouse eyes.
3
Combining the mSncg promoter with CRISPR/Cas9 enabled RGC-specific knockdown of pro-degenerative genes.
4
The mouse γ-synuclein promoter also drives gene expression in human retinal ganglion cells, supporting its translational potential.
5
The study establishes an RGC-targeted gene modulation strategy for developing therapies against optic neuropathies.

Mouse retinal ganglion cells and optic nerves in optic neuropathies

γ-synuclein promoter-mediated RGC-specific transgene expression and CRISPR/Cas9 gene editing for neuroprotection

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2020-04-16
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Qizhao Wang
Pei Zhuang
Haoliang Huang
Liang Li
Liang Liu
Hannah C. Webber
Roopa Dalal
Leonard Siew
Clarisse M. Fligor
Kun‐Che Chang
Michael Nahmou
Alexander Kreymerman
Yang Sun
Jason S. Meyer
Jeffrey L. Goldberg
Yang Hu
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