Kundu Sayan, Jaiswal Mohit, Babu Mullapudi Venkanna, Guo Jiatong, Kamat Manasi, Basso Kari B, Guo Zhongwu
Department of Chemistry, University of Florida, Gainesville, FL 32611, USA.
UF Health Cancer Centre, University of Florida, Gainesville, FL 32611, USA.
Chemistry. 2024 Feb 7;30(8):e202303047. doi: 10.1002/chem.202303047. Epub 2023 Dec 14.
Glycosylphosphatidylinositols (GPIs) need to interact with other components in the cell membrane to transduce transmembrane signals. A bifunctional GPI probe was employed for photoaffinity-based proximity labelling and identification of GPI-interacting proteins in the cell membrane. This probe contained the entire core structure of GPIs and was functionalized with photoreactive diazirine and clickable alkyne to facilitate its crosslinking with proteins and attachment of an affinity tag. It was disclosed that this probe was more selective than our previously reported probe containing only a part structure of the GPI core for cell membrane incorporation and an improved probe for studying GPI-cell membrane interaction. Eighty-eight unique membrane proteins, many of which are related to GPIs/GPI-anchored proteins, were identified utilizing this probe. The proteomics dataset is a valuable resource for further analyses and data mining to find new GPI-related proteins and signalling pathways. A comparison of these results with those of our previous probe provided direct evidence for the profound impact of GPI glycan structure on its interaction with the cell membrane.
糖基磷脂酰肌醇(GPI)需要与细胞膜中的其他成分相互作用,以转导跨膜信号。一种双功能GPI探针被用于基于光亲和的邻近标记和鉴定细胞膜中与GPI相互作用的蛋白质。该探针包含GPI的完整核心结构,并通过光反应性重氮嗪和可点击炔烃进行功能化,以促进其与蛋白质交联并连接亲和标签。据披露,该探针比我们之前报道的仅包含GPI核心部分结构的探针在细胞膜掺入方面更具选择性,是研究GPI-细胞膜相互作用的一种改进探针。利用该探针鉴定出了88种独特的膜蛋白,其中许多与GPI/ GPI锚定蛋白相关。蛋白质组学数据集是进一步分析和数据挖掘以发现新的GPI相关蛋白和信号通路的宝贵资源。将这些结果与我们之前探针的结果进行比较,为GPI聚糖结构对其与细胞膜相互作用的深远影响提供了直接证据。