Allele-Specific Knockdown of Mutant Huntingtin Protein via Editing at Coding Region Single Nucleotide Polymorphism Heterozygosities

被引:6
|
作者
Oikemus, Sarah R. [1 ]
Pfister, Edith L. [2 ]
Sapp, Ellen [5 ,6 ]
Chase, Kathryn O. [2 ]
Kennington, Lori A. [2 ]
Hudgens, Edward [1 ]
Miller, Rachael [2 ]
Zhu, Lihua Julie [1 ]
Chaudhary, Akanksh [1 ]
Mick, Eric O. [3 ]
Sena-Esteves, Miguel [7 ]
Wolfe, Scot A. [1 ,4 ]
DiFiglia, Marian [5 ,6 ]
Aronin, Neil [2 ,8 ]
Brodsky, Michael H. [1 ]
机构
[1] Univ Massachusetts, Chan Med Sch, Dept Mol Cell & Canc Biol, Rm 623 LRB,364 Plantat St, Worcester, MA 01605 USA
[2] Univ Massachusetts, Chan Med Sch, Dept Med, 55 N Lake Ave, Worcester, MA 01605 USA
[3] Univ Massachusetts, Chan Med Sch, Dept Populat & Quantitat Hlth Sci, Worcester, MA 01605 USA
[4] Univ Massachusetts, Chan Med Sch, Dept Biochemisny & Mol Pharmacol, Worcester, MA 01605 USA
[5] Harvard Med Sch, Dept Neurol, Charlestown, MA USA
[6] MassGen Inst Neurodegenerat Dis, Charlestown, MA USA
[7] Univ Massachusetts, Chan Med Sch, Horae Gene Therapy Ctr, Worcester, MA 01605 USA
[8] Univ Massachusetts, RNA Therapeut Inst, Chan Med Sch, Worcester, MA 01605 USA
关键词
Huntington's disease; gene editing; single nucleotide polymorphism; MOUSE MODEL; IMPROVES MOTOR; DISEASE; GENE; RNA; INACTIVATION; SYSTEM; CRISPR-CAS9; EXPRESSION; STRIATUM;
D O I
10.1089/hum.2020.323
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Huntington's disease (HD) is a devastating, autosomal dominant neurodegenerative disease caused by a trinucleotide repeat expansion in the huntingtin (HTT) gene. Inactivation of the mutant allele by clustered regularly interspaced short palindromic repeats (CRISPR)-Cas9 based gene editing offers a possible therapeutic approach for this disease, but permanent disruption of normal HTT function might compromise adult neuronal function. Here, we use a novel HD mouse model to examine allele-specific editing of mutant HTT (mHTT), with a BAC97 transgene expressing mHTT and a YAC18 transgene expressing normal HTT. We achieve allele-specific inactivation of HTT by targeting a protein coding sequence containing a common, heterozygous single nucleotide polymorphism (SNP). The outcome is a marked and allele-selective reduction of mHTT protein in a mouse model of HD. Expression of a single CRISPR-Cas9 nuclease in neurons generated a high frequency of mutations in the targeted HD allele that included both small insertion/deletion (InDel) mutations and viral vector insertions. Thus, allele-specific targeting of InDel and insertion mutations to heterozygous coding region SNPs provides a feasible approach to inactivate autosomal dominant mutations that cause genetic disease.
引用
收藏
页码:25 / 36
页数:12
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