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用反义锁核酸 Gapmer 抑制表达作为治疗面肩肱型肌营养不良症的一种疗法。

Inhibition of expression with antisense LNA gapmers as a therapy for facioscapulohumeral muscular dystrophy.

机构信息

Department of Medical Genetics, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, AB T6G2H7, Canada.

Laboratory of Biomedical Science, Department of Veterinary Medicine, College of Bioresource Sciences, Nihon University, Fujisawa, Kanagawa, 252-0880, Japan.

出版信息

Proc Natl Acad Sci U S A. 2020 Jul 14;117(28):16509-16515. doi: 10.1073/pnas.1909649117. Epub 2020 Jun 29.

Abstract

Facioscapulohumeral muscular dystrophy (FSHD), characterized by progressive muscle weakness and deterioration, is genetically linked to aberrant expression of in muscle. DUX4, in its full-length form, is cytotoxic in nongermline tissues. Here, we designed locked nucleic acid (LNA) gapmer antisense oligonucleotides (AOs) to knock down in immortalized FSHD myoblasts and the FSHD mouse model. Using a screening method capable of reliably evaluating the knockdown efficiency of LNA gapmers against endogenous messenger RNA in vitro, we demonstrate that several designed LNA gapmers selectively and effectively reduced expression with nearly complete knockdown. We also found potential functional benefits of AOs on muscle fusion and structure in vitro. Finally, we show that one of the LNA gapmers was taken up and induced effective silencing of upon local treatment in vivo. The LNA gapmers developed here will help facilitate the development of FSHD therapies.

摘要

面肩肱型肌营养不良症(FSHD)的特征是进行性肌肉无力和恶化,其与肌肉中 的异常表达有关。全长形式的 DUX4 在非生殖组织中具有细胞毒性。在这里,我们设计了锁核酸(LNA)间隙寡核苷酸(AOs)来敲低永生性 FSHD 成肌细胞和 FSHD 小鼠模型中的 。使用一种能够可靠地评估 LNA 间隙寡核苷酸在体外对内源性 信使 RNA 的敲低效率的筛选方法,我们证明了几种设计的 LNA 间隙寡核苷酸能够选择性和有效地降低 表达,几乎完全敲低。我们还发现 AOs 在体外对肌肉融合和结构具有潜在的功能益处。最后,我们表明,LNA 间隙寡核苷酸之一在体内局部治疗时被摄取并诱导了 的有效沉默。这里开发的 LNA 间隙寡核苷酸将有助于推动 FSHD 疗法的发展。

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本文引用的文献

1
The Genetics and Epigenetics of Facioscapulohumeral Muscular Dystrophy.面肩肱型肌营养不良症的遗传学和表观遗传学。
Annu Rev Genomics Hum Genet. 2019 Aug 31;20:265-291. doi: 10.1146/annurev-genom-083118-014933. Epub 2019 Apr 24.
4
Inotersen: First Global Approval.依洛瑟那:全球首款获批。
Drugs. 2018 Sep;78(13):1371-1376. doi: 10.1007/s40265-018-0968-5.
8
Cellular uptake and trafficking of antisense oligonucleotides.反义寡核苷酸的细胞摄取和转运。
Nat Biotechnol. 2017 Mar;35(3):230-237. doi: 10.1038/nbt.3779. Epub 2017 Feb 27.

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