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LAMTOR1通过抑制TRPML1来调节海马神经元中树突状溶酶体的定位。

LAMTOR1 regulates dendritic lysosomal positioning in hippocampal neurons through TRPML1 inhibition.

作者信息

Sun Jiandong, Lin Weiju, Hao Xiaoning, Baudry Michel, Bi Xiaoning

机构信息

College of Osteopathic Medicine of the Pacific, Western University of Health Sciences, Pomona, CA, United States.

College of Dental Medicine, Western University of Health Sciences, Pomona, CA, United States.

出版信息

Front Cell Neurosci. 2024 Nov 22;18:1495546. doi: 10.3389/fncel.2024.1495546. eCollection 2024.

Abstract

Intracellular lysosomal trafficking and positioning are fundamental cellular processes critical for proper neuronal function. Among the diverse array of proteins involved in regulating lysosomal positioning, the Transient Receptor Potential Mucolipin 1 (TRPML1) and the Ragulator complex have emerged as central players. TRPML1, a lysosomal cation channel, has been implicated in lysosomal biogenesis, endosomal/lysosomal trafficking including in neuronal dendrites, and autophagy. LAMTOR1, a subunit of the Ragulator complex, also participates in the regulation of lysosomal trafficking. Here we report that LAMTOR1 regulates lysosomal positioning in dendrites of hippocampal neurons by interacting with TRPML1. LAMTOR1 knockdown (KD) increased lysosomal accumulation in proximal dendrites of cultured hippocampal neurons, an effect reversed by TRPML1 KD or inhibition. On the other hand, TRPML1 activation with ML-SA1 or prevention of TRPML1 interaction with LAMTOR1 using a TAT-decoy peptide induced dendritic lysosomal accumulation. LAMTOR1 KD-induced proximal dendritic lysosomal accumulation was blocked by the dynein inhibitor, ciliobrevin D, suggesting the involvement of a dynein-mediated transport. These results indicate that LAMTOR1-mediated inhibition of TRPML1 is critical for normal dendritic lysosomal distribution and that release of this inhibition or direct activation of TRPML1 results in abnormal dendritic lysosomal accumulation. The roles of LAMTOR1-TRPML1 interactions in lysosomal trafficking and positioning could have broad implications for understanding cognitive disorders associated with lysosomal pathology and calcium dysregulation.

摘要

细胞内溶酶体运输和定位是对神经元正常功能至关重要的基本细胞过程。在参与调节溶酶体定位的各种蛋白质中,瞬时受体电位黏脂蛋白1(TRPML1)和Ragulator复合物已成为核心参与者。TRPML1是一种溶酶体阳离子通道,与溶酶体生物发生、包括神经元树突在内的内体/溶酶体运输以及自噬有关。Ragulator复合物的亚基LAMTOR1也参与溶酶体运输的调节。在此我们报告,LAMTOR1通过与TRPML1相互作用来调节海马神经元树突中的溶酶体定位。敲低LAMTOR1(KD)会增加培养的海马神经元近端树突中的溶酶体积聚,TRPML1 KD或抑制可逆转这种效应。另一方面,用ML-SA1激活TRPML1或使用TAT诱饵肽阻止TRPML1与LAMTOR1相互作用会诱导树突溶酶体积聚。动力蛋白抑制剂ciliobrevin D可阻断LAMTOR1 KD诱导的近端树突溶酶体积聚,提示涉及动力蛋白介导的运输。这些结果表明,LAMTOR1介导的对TRPML1的抑制对于正常的树突溶酶体分布至关重要,而这种抑制的解除或TRPML1的直接激活会导致树突溶酶体异常积聚。LAMTOR1-TRPML1相互作用在溶酶体运输和定位中的作用可能对理解与溶酶体病理和钙调节异常相关的认知障碍具有广泛意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50c6/11621854/aff8551bf16a/fncel-18-1495546-g001.jpg

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