Self-inactivating AAV-CRISPR at different ages enables sustained amelioration of Huntington's disease deficits in BAC226Q mice
Dai, Y.; Abudujielili, Z.; Ding, Y.; Huang, W.; Yin, J.; Ou, L.; Hu, J.; Zheng, S.; Li, C.
Show abstract
Huntingtons disease (HD) is a monogenic autosomal dominant neurodegenerative disorder caused by a CAG repeat expansion in the first exon of the HTT gene, yielding a gain-of-toxic-function mutant Huntingtin protein mHTT. CRISPR/Cas9 is a potentially powerful therapeutic tool for treating HD by eliminating mutant HTT (mHTT) gene. We developed a specific SaCas9 guide RNA to target human mHTT, and a self-inactivating gene editing system that abolishes SaCas9 after a short transient expression for high gene editing efficiency and maximal safety to prevent off-target effects. Both conventional and the new self-inactivating gene editing systems achieved successful elimination of mHTT gene, 60-90% mHTT protein and 90% of mHTT aggregation in BAC226Q HD mouse brains, which resulted in significant long-term rescue of neural pathology, motor deficits, weight loss and shortened lifespan. These beneficial effects were observed when gene editing was applied before, at and well after the on-set of pathological and behavioral abnormalities. These proof-of-concept data demonstrate that gene editing can be a highly effective therapeutic approach for HD and other inherited neurodegenerative diseases. One Sentence SummarySelf-inactivating CRISPR for mutant huntingtin in HD mice achieved long-term rescue of neural pathology, motor deficits, weight loss and survival.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Suppression of Huntington's Disease Somatic Instability by Transcriptional Repression and Direct CAG Repeat Binding 95%
- PMS1 as a target for splice modulation to prevent somatic CAG repeat expansion in Huntington's disease 95%
- Mutant Huntingtin impairs neurodevelopment in human brain organoids through CHCHD2-mediated neurometabolic failure 95%
Similar papers in this journal
- Huntingtin is an RNA-binding protein and participates in NEAT1-mediated paraspeckles 93%
- Astrocytic TDP-43 dysregulation impairs memory by modulating antiviral pathways and interferon-inducible chemokines 93%
- Neurons burdened by DNA double strand breaks incite microglia activation through antiviral-like signaling in neurodegeneration. 93%
Similar papers in this journal
- Base editing strategies to convert CAG to CAA diminish the disease-causing mutation in Huntington's disease 96%
- An antisense oligonucleotide-based strategy to ameliorate cognitive dysfunction in the 22q11.2 Deletion Syndrome 93%
- Cell autonomous role of leucine-rich repeat kinase in protection of dopaminergic neuron survival 93%
Similar papers in this journal
- Single cell spatial transcriptomic and translatomic profiling of dopaminergic neurons in health, aging and disease 93%
- Abnormal hyperactivity of specific striatal ensembles encodes distinct dyskinetic behaviors revealed by high-resolution clustering 93%
- Pathological tau alters head direction signaling and induces spatial disorientation 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.