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蛋白质寡聚化的活体检测技术及其研究进展

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蛋白质寡聚在许多生理过程中起着非常重要的作用,分析蛋白寡聚化有利于深层次解析蛋白质-蛋白质/配体相互作用、信号转导以及疾病发生相关机制等生物学过程.近年来,随着一些新兴技术的涌现,实时、动态、活体观测蛋白与蛋白相互作用的研究已成为热点.通过提高时间分辨率和空间分辨率,可以更准确地观察和研究蛋白质的动态行为和相互作用.同时,新兴技术与算法的结合进一步扩展了对蛋白质在时间和空间尺度上的研究范围,使我们能更深入地探索蛋白质结构与功能之间的关系.本文首先简要介绍了寡聚蛋白质的分类和形成机制,随后从蛋白标记技术和活体检测技术两个方面综述了用于分析蛋白复合体寡聚化的几种主要技术以及其研究进展.最后,展望了蛋白质寡聚化研究的发展前景,希望为研究者在选择适合的分析技术时提供一些理论参考.
Technology and research progress on in vivo protein oligomer-ization detection
Proteins are large molecules of specific conformations,and their functions vary depending on their structure.As the key components involved in life processes,proteins often assemble into large complexes called oligomers to execute important activities.Oligomers are of two types:Homologous and heterologous.The homologous oligomers contain subunits of the same polypeptide chain,whereas the heterologous ones consist of two or more polypeptide chains with different amino acids or different biopolymers,such as nucleic acids.These oligomer complexes play significant roles in regulating enzyme activity,signal transduction,and cell adhesion.Oligomerization can increase protein concentration in local space to provide higher stability and enhance the specificity in a molecular recognition process.Oligomerization is influenced by factors such as the types of ligands,proteins,and temperature.For example,receptor proteins are often assembled into dimeric or higher-order oligomers mediated by their corresponding ligands,which promote downstream signaling cascades to transmit signals.The formation mechanisms of oligomeric proteins can be categorized into the following four types:Domain exchange,ligand-induced oligomerization,interfacial point mutation,and post-translational modification.Domain exchange allows functional conversion between protein monomers and oligomers.Ligands can induce oligomerization to activate protein activity,as is typically observed in receptor proteins.Interfacial point mutation involves changes in the amino acid sequence,insertion,or deletion of residues in an interfacial region,which distinguishes different oligomerization states.Post-translational modifications are essential for functional protein formation,although errors in modifications can result in the formation and accumulation of abnormal oligomers,which potentially contribute to disease development.Therefore,analyzing protein oligomerization is crucial for understanding biological processes such as protein-protein/ligand interactions,signal transduction,and disease-related mechanisms.Researchers have optimized the study of protein oligomerization from different perspectives,including predicting and identifying interacting proteins,labeling target proteins,and observing them through imaging.The conventional techniques such as co-immunoprecipita-tion(Co-IP)and yeast two-hybrid precipitation have some limitations,such as the inability to investigate directly in living cells as well as the possibility of giving false-positive or false-negative results.In recent years,however,the emergence of new technologies has enabled real-time,dynamic,and in vivo observation of protein-protein interactions,which has significantly contributed to the advancements in this field.For instance,the use of more stable and photobleaching-resistant fluorescent probes,combined with high-speed imaging techniques,has improved the temporal and spatial resolution in observing the dynamic behavior and interactions of proteins.In addition,the combination of emerging technologies and algorithms has expanded the scope of protein explored at both temporal and spatial scales,which has deepened our understanding of the relation between protein structure and function.This review summarizes the classification and formation mechanisms of oligomeric proteins,as well as highlights several major technologies for analyzing protein complex oligomerization,and provides an overview of the recent research progress in protein labeling and in vivo detection technologies.Finally,it offers a prospective outlook on the development of research in protein oligomerization,intending to provide theoretical references for researchers in selecting appropriate analytical techniques.

protein oligomerizationprotein-protein interactionprotein labelingin vivo determination

罗鹏云、李岩竣、左新秀、钱虹萍、徐昌文、林金星、崔亚宁

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林木育种与生态修复国家工程研究中心,林木遗传育种全国重点实验室,树木花卉育种生物工程国家林业和草原局重点实验室,北京林业大学生物科学与技术学院,北京 100083

蛋白质寡聚化 蛋白质-蛋白质相互作用 蛋白质标记 活体检测

国家自然科学基金北京市科技新星计划

3237074020230484251

2024

科学通报
中国科学院国家自然科学基金委员会

科学通报

CSTPCD北大核心
影响因子:1.269
ISSN:0023-074X
年,卷(期):2024.69(8)
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