The Jackson Laboratory, Bar Harbor, Maine, USA.
Department of Pediatrics, University of Texas Southwestern Medical Center, Dallas, Texas, USA.
J Clin Invest. 2021 Jun 1;131(11). doi: 10.1172/JCI137159.
Charcot-Marie-Tooth disease type 4J (CMT4J) is caused by recessive, loss-of-function mutations in FIG4, encoding a phosphoinositol(3,5)P2-phosphatase. CMT4J patients have both neuron loss and demyelination in the peripheral nervous system, with vacuolization indicative of endosome/lysosome trafficking defects. Although the disease is highly variable, the onset is often in childhood and FIG4 mutations can dramatically shorten life span. There is currently no treatment for CMT4J. Here, we present the results of preclinical studies testing a gene-therapy approach to restoring FIG4 expression. A mouse model of CMT4J, the Fig4-pale tremor (plt) allele, was dosed with a single-stranded adeno-associated virus serotype 9 (AAV9) to deliver a codon-optimized human FIG4 sequence. Untreated, Fig4plt/plt mice have a median survival of approximately 5 weeks. When treated with the AAV9-FIG4 vector at P1 or P4, mice survived at least 1 year, with largely normal gross motor performance and little sign of neuropathy by neurophysiological or histopathological evaluation. When mice were treated at P7 or P11, life span was still significantly prolonged and peripheral nerve function was improved, but rescue was less complete. No unanticipated adverse effects were observed. Therefore, AAV9-mediated delivery of FIG4 is a well-tolerated and efficacious strategy in a mouse model of CMT4J.
腓骨肌萎缩症 4J 型(CMT4J)是由 FIG4 基因隐性、功能丧失性突变引起的,该基因编码一种磷酸肌醇(3,5)P2 磷酸酶。CMT4J 患者的周围神经系统既有神经元丢失,也有脱髓鞘,有空泡化,表明内体/溶酶体运输缺陷。尽管该疾病具有高度变异性,但发病通常在儿童时期,FIG4 突变可显著缩短寿命。目前尚无治疗 CMT4J 的方法。在这里,我们报告了一项基因治疗方法恢复 FIG4 表达的临床前研究结果。CMT4J 的一种小鼠模型,即 Fig4 苍白震颤(plt)等位基因,用单链腺相关病毒血清型 9(AAV9)进行了给药,以递送密码子优化的人 FIG4 序列。未经治疗的 Fig4plt/plt 小鼠的中位存活期约为 5 周。当用 AAV9-FIG4 载体在 P1 或 P4 时进行治疗时,小鼠至少存活 1 年,运动功能基本正常,神经生理或组织病理学评估几乎没有神经病变的迹象。当在 P7 或 P11 时进行治疗时,寿命仍然显著延长,周围神经功能得到改善,但挽救效果不太完全。未观察到意外的不良影响。因此,AAV9 介导的 FIG4 传递在 CMT4J 的小鼠模型中是一种耐受良好且有效的策略。