免疫系统
跨膜蛋白
医学
神经科学
中枢神经系统
生物信息学
膜蛋白
溶酶体
神经系统
氧化应激
免疫学
信号转导
神经退行性变
转化研究
生物
叙述性评论
下调和上调
蛋白质聚集
基因
免疫功能障碍
胶质瘤
生物标志物
脂质信号
冲程(发动机)
癌症研究
内体
癌症
作者
Bowen Wu,Zhenyan Niu,Yanfang Sui
标识
DOI:10.17305/bb.2026.13624
摘要
Lysosomal-associated protein transmembrane (LAPTM) family members-LAPTM4A, LAPTM4B, and LAPTM5-regulate lysosomal integrity, autophagy-lysosome flux, lipid homeostasis, and immune signaling, pathways increasingly implicated in neurological disease. This review synthesizes structure-function evidence for LAPTM proteins and examines how their dysregulation contributes to Alzheimer's and Parkinson's disease, ischemia-reperfusion injury, and gliomas. Based on a targeted narrative analysis of primary and translational studies, we highlight that LAPTM proteins influence lysosomal acidification and membrane stability, endolysosomal trafficking, and ceramide/ion handling, thereby shaping protein aggregate clearance, oxidative stress responses, and microglia/macrophage polarization. Preclinical data link LAPTM5 to stroke outcomes via stress-kinase and lysosomal pathways, while LAPTM4A and LAPTM4B associate with glioma progression, immune evasion, and therapy resistance. Overall, LAPTM proteins represent promising biomarkers and therapeutic targets, warranting cell-type-resolved validation and central nervous system (CNS)-optimized delivery strategies, including gene therapy, small-molecule/degrader approaches, and multi-omics-guided patient stratification.
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