category
bioRxiv
date
Mar 16, 2026
slug
status
Published
summary
创新性整合动态SILAC标记、肽段分级和LC-MS/MS技术,实现人类神经元中10,792个蛋白质半衰期的深度定量测量;首次系统比较皮层兴奋性神经元与运动神经元的蛋白质动态差异;开发开放获取的NeuronProfile交互式数据库。
tags
蛋白质组学
测序技术
type
Post
📄 原文题目
A Deep Quantitative Proteome Turnover Platform for Human iPSC-derived Neurons
🔗 原文链接
💡 AI 核心解读
创新性整合动态SILAC标记、肽段分级和LC-MS/MS技术,实现人类神经元中10,792个蛋白质半衰期的深度定量测量;首次系统比较皮层兴奋性神经元与运动神经元的蛋白质动态差异;开发开放获取的NeuronProfile交互式数据库。
📝 英文原版摘要
Quantitative evaluation of protein turnover in human neurons is crucial for understanding neuron homeostasis and guiding drug development for neurological diseases. However, measuring protein turnover in postmitotic neurons remains challenging due to the high dynamic range of protein half-lives and limited proteome coverage in SILAC (Stable Isotope Labeling by Amino acids in Cell culture) experiments. Despite broad applications of dynamic SILAC proteomics to measure protein turnover in rodent tissues and primary neurons, few studies have measured protein half-lives in human neurons with limited proteome coverage. Here, we established a comprehensive platform to quantify protein half-lives in human induced pluripotent stem cell (iPSC)-derived neurons. By integrating optimized dynamic SILAC labeling in human neuron cultures, extensive peptide fractionation, optimized data-dependent and data-independent LC-MS/MS acquisition methods, and a streamlined computational pipeline, we achieved deep and accurate measurement of 10,792 protein half-lives from 162,854 unique peptides. We then compared the protein turnover and abundances in iPSC-derived glutamatergic cortical neurons and spinal motor neurons, revealing globally conserved proteome dynamics alongside subtype-specific differences consistent with specialized neuronal functions. To enable broad community access, we created NeuronProfile (www.neuronprofile.com), an interactive web platform for exploring protein turnover, abundance, and subcellular location in human neurons. Together, this work provides a comprehensive analytical platform to assess human neuronal proteostasis and a foundational resource for neurological disease research and therapeutic development.
- 作者:NotionNext
- 链接:https://tangly1024.com/article/32548bd6-1f96-81e6-a3e7-dcccbb79142a
- 声明:本文采用 CC BY-NC-SA 4.0 许可协议,转载请注明出处。
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