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发育中神经元的溶酶体蛋白水解功能受损会诱导蛋白质聚集,并破坏形态发生和神经成熟。

Impaired lysosomal proteolysis in developing neurons induces protein aggregation and disrupts morphogenesis and neuromaturation.

作者信息

Zhou Yinping, Fujiwara Yuuki, Shirazaki Mai, Tian Xiaoye, Igarashi Gen, Yamauchi Hiroto, Imaizumi Kazunori, Hayakawa Hideki, Miyoshi Ko, Katayama Taiichi

机构信息

Department of Child Development and Molecular Brain Science, United Graduate School of Child Development, Osaka University, Suita, Osaka, 565-0871, Japan.

Department of Child Development and Molecular Brain Science, United Graduate School of Child Development, Osaka University, Suita, Osaka, 565-0871, Japan.

出版信息

Neurochem Int. 2025 Aug 30;190:106048. doi: 10.1016/j.neuint.2025.106048.

Abstract

Lysosomes play a central role in the degradation of intracellular substances. Through this degradative capacity, lysosomes contribute to biological homeostasis and are particularly critical for the maintenance and function of neurons. Deficiencies in various lysosomal proteins cause a group of conditions known as lysosomal storage disorders, which often present with developmental delay and other neurological symptoms. In addition, defects in lysosomal function and the autophagic pathways that deliver intracellular substrates to lysosomes have been linked to neurodevelopmental disorders. However, the contribution of lysosomal degradative capacity to neurodevelopment has not been well appreciated. In this study, we aimed to examine the relationship between overall lysosomal proteolytic capacity and neuronal development using primary cultured neurons at early developmental stages. We found that lysosomal protein expression and proteolytic activity increased with neuronal maturation, suggesting that lysosomal proteolysis may play an important role in neuronal development. Treatment of cultured neurons with specific inhibitors of lysosomal proteases during development impaired morphogenesis, as indicated by a significant decrease in neurite length and complexity, along with decreased expression of neuronal lineage marker proteins. Furthermore, we observed that neurons with development impaired by lysosomal protease inhibition accumulated aggregated proteins-some of which were ubiquitinated-in the cytoplasm. These aggregates were enriched with various proteins related to neurodevelopment. These findings provide new insights into the previously underappreciated role of lysosomes in neuronal development.

摘要

溶酶体在细胞内物质的降解过程中发挥着核心作用。通过这种降解能力,溶酶体有助于生物体内环境的稳定,对神经元的维持和功能尤为关键。各种溶酶体蛋白的缺陷会导致一组被称为溶酶体贮积症的病症,这些病症常表现为发育迟缓及其他神经症状。此外,溶酶体功能以及将细胞内底物输送至溶酶体的自噬途径中的缺陷,已与神经发育障碍相关联。然而,溶酶体降解能力对神经发育的贡献尚未得到充分认识。在本研究中,我们旨在利用早期发育阶段的原代培养神经元,研究整体溶酶体蛋白水解能力与神经元发育之间的关系。我们发现,溶酶体蛋白表达和蛋白水解活性随着神经元成熟而增加,这表明溶酶体蛋白水解可能在神经元发育中发挥重要作用。在发育过程中用溶酶体蛋白酶的特异性抑制剂处理培养的神经元,会损害形态发生,表现为神经突长度和复杂性显著降低,同时神经元谱系标记蛋白的表达也减少。此外,我们观察到,因溶酶体蛋白酶抑制而发育受损的神经元在细胞质中积累了聚集蛋白,其中一些蛋白被泛素化。这些聚集体富含各种与神经发育相关的蛋白。这些发现为溶酶体在神经元发育中此前未被充分认识的作用提供了新的见解。

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