Department of Medicine, Washington University School of Medicine, St. Louis, MO 63110.
Department of Psychiatry, Washington University School of Medicine, St. Louis, MO 63110.
Proc Natl Acad Sci U S A. 2020 Apr 21;117(16):9032-9041. doi: 10.1073/pnas.1917675117. Epub 2020 Apr 6.
Lysosomal storage diseases (LSDs) are typically caused by a deficiency in a soluble acid hydrolase and are characterized by the accumulation of undegraded substrates in the lysosome. Determining the role of specific cell types in the pathogenesis of LSDs is a major challenge due to the secretion and subsequent uptake of lysosomal hydrolases by adjacent cells, often referred to as "cross-correction." Here we create and validate a conditional mouse model for cell-autonomous expression of galactocerebrosidase (GALC), the lysosomal enzyme deficient in Krabbe disease. We show that lysosomal membrane-tethered GALC (GALCLAMP1) retains enzyme activity, is able to cleave galactosylsphingosine, and is unable to cross-correct. Ubiquitous expression of GALCLAMP1 fully rescues the phenotype of the GALC-deficient mouse (Twitcher), and widespread deletion of GALCLAMP1 recapitulates the Twitcher phenotype. We demonstrate the utility of this model by deleting GALCLAMP1 specifically in myelinating Schwann cells in order to characterize the peripheral neuropathy seen in Krabbe disease.
溶酶体贮积症(LSDs)通常是由于溶酶体中的可溶性酸性水解酶缺乏引起的,其特征是未降解的底物在溶酶体中积累。由于溶酶体水解酶的分泌和随后被相邻细胞摄取,确定 LSDs 发病机制中特定细胞类型的作用是一个主要挑战,这种现象通常被称为“交叉校正”。在这里,我们创建并验证了一种条件性表达半乳糖脑苷脂酶(GALC)的小鼠模型,GALC 是克拉伯病中缺乏的溶酶体酶。我们表明,溶酶体膜锚定的 GALC(GALCLAMP1)保留酶活性,能够切割半乳糖基神经酰胺,并不能进行交叉校正。GALCLAMP1 的普遍表达完全挽救了 GALC 缺陷小鼠(Twitcher)的表型,而 GALCLAMP1 的广泛缺失则重现了 Twitcher 表型。我们通过在髓鞘形成 Schwann 细胞中特异性删除 GALCLAMP1 来证明该模型的实用性,以便对克拉伯病中所见的周围神经病进行特征描述。