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外泌体过度释放是将溶酶体缺陷与全身性纤维化联系起来的致病途径。

Excessive exosome release is the pathogenic pathway linking a lysosomal deficiency to generalized fibrosis.

机构信息

Department of Genetics, St. Jude Children's Research Hospital, 262 Danny Thomas Place, Memphis, TN 38105, USA.

Proteomics Center, Erasmus University Medical Center, Wytemaweg 80, 3015 CN, Rotterdam, Netherlands.

出版信息

Sci Adv. 2019 Jul 17;5(7):eaav3270. doi: 10.1126/sciadv.aav3270. eCollection 2019 Jul.

Abstract

Lysosomal exocytosis is a ubiquitous process negatively regulated by neuraminidase 1 (NEU1), a sialidase mutated in the glycoprotein storage disease sialidosis. In mice, excessive lysosomal exocytosis is at the basis of disease pathogenesis. Yet, the tissue-specific molecular consequences of this deregulated pathway are still unfolding. We now report that in muscle connective tissue, fibroblasts have features of myofibroblasts and are proliferative, migratory, and exocytose large amounts of exosomes. These nanocarriers loaded with activated transforming growth factor-β and wingless-related integration site (WNT)/β-catenin signaling molecules propagate fibrotic signals to other cells, maintaining the tissue in a prolonged transitional status. Myofibroblast-derived exosomes fed to normal fibroblasts convert them into myofibroblasts, changing the recipient cells' proliferative and migratory properties. These findings reveal an unexpected exosome-mediated signaling pathway downstream of NEU1 deficiency that propagates a fibrotic disease and could be implicated in idiopathic forms of fibrosis in humans.

摘要

溶酶体胞吐作用是一种普遍存在的过程,受神经氨酸酶 1(NEU1)的负调控,NEU1 是一种唾液酸酶,在糖蛋白贮积病唾液酸贮积症中发生突变。在小鼠中,溶酶体过度胞吐作用是疾病发病机制的基础。然而,这条调节途径的组织特异性分子后果仍在不断显现。我们现在报告说,在肌肉结缔组织中,成纤维细胞具有成肌纤维细胞的特征,并且具有增殖、迁移和大量胞吐小体的能力。这些装载有激活的转化生长因子-β和 Wnt/β-连环蛋白信号分子的纳米载体将纤维化信号传播到其他细胞,使组织保持长时间的过渡状态。肌成纤维细胞来源的小体喂养给正常成纤维细胞,将其转化为肌成纤维细胞,改变受体细胞的增殖和迁移特性。这些发现揭示了 NEU1 缺乏的一种意想不到的小体介导的信号通路,该通路传播纤维化疾病,并可能与人类特发性纤维化形式有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c397/6636989/b5ac6a26a45d/aav3270-F1.jpg

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