School of Basic Medical Sciences, Xianning Medical College, Hubei University of Science and Technology, Xianning, Hubei, 437000, China.
School of Pharmacy, Xianning Medical College, Hubei University of Science and Technology, Xianning, Hubei, 437000, China.
BMC Genomics. 2023 Mar 24;24(1):146. doi: 10.1186/s12864-023-09238-z.
Protein‒protein interactions (PPIs) are the foundation of the life activities of cells. TurboID is a biotin ligase with higher catalytic efficiency than BioID or APEX that reduces the required labeling time from 18 h to 10 min. Since many proteins participate in binding and catalytic events that are very short-lived, it is theoretically possible to find relatively novel binding proteins using the TurboID technique. Cell proliferation, apoptosis, autophagy, oxidative stress and metabolic disorders underlie many diseases, and forkhead box transcription factor 1 (FOXO1) plays a key role in these physiological and pathological processes.
The FOXO1-TurboID fusion gene was transfected into U251 astrocytes, and a cell line stably expressing FOXO1 was constructed. While constructing the FOXO1 overexpression plasmid, we also added the gene sequence of TurboID to perform biotin labeling experiments in the successfully fabricated cell line to look for FOXO1 reciprocal proteins. Label-free mass spectrometry analysis was performed, and 325 interacting proteins were found. A total of 176 proteins were identified in the FOXO1 overexpression group, and 227 proteins were identified in the Lipopolysaccharide -treated group (Lipopolysaccharide, LPS). Wild-type U251 cells were used to exclude interference from nonspecific binding. The FOXO1-interacting proteins hnRNPK and RBM14 were selected for immunoprecipitation and immunofluorescence verification.
The TurboID technique was used to select the FOXO1-interacting proteins, and after removing the proteins identified in the blank group, a large number of interacting proteins were found in both positive groups. This study lays a foundation for further study of the function of FOXO1 and the regulatory network in which it is involved.
蛋白质-蛋白质相互作用(PPIs)是细胞生命活动的基础。TurboID 是一种生物素连接酶,其催化效率高于 BioID 或 APEX,可将所需的标记时间从 18 小时缩短至 10 分钟。由于许多蛋白质参与结合和催化事件,这些事件的寿命非常短暂,因此理论上可以使用 TurboID 技术找到相对新颖的结合蛋白。细胞增殖、凋亡、自噬、氧化应激和代谢紊乱是许多疾病的基础,叉头框转录因子 1(FOXO1)在这些生理和病理过程中发挥关键作用。
将 FOXO1-TurboID 融合基因转染至 U251 星形胶质细胞中,构建稳定表达 FOXO1 的细胞系。在构建 FOXO1 过表达质粒的过程中,我们还添加了 TurboID 的基因序列,以便在成功构建的细胞系中进行生物素标记实验,寻找 FOXO1 的相互作用蛋白。进行无标记质谱分析,共发现 325 个相互作用蛋白。FOXO1 过表达组共鉴定到 176 个蛋白,脂多糖处理组(脂多糖,LPS)共鉴定到 227 个蛋白。野生型 U251 细胞用于排除非特异性结合的干扰。选择 FOXO1 相互作用蛋白 hnRNPK 和 RBM14 进行免疫沉淀和免疫荧光验证。
使用 TurboID 技术筛选 FOXO1 相互作用蛋白,在去除空白组鉴定到的蛋白后,在两个阳性组中均发现了大量相互作用蛋白。本研究为进一步研究 FOXO1 的功能及其参与的调控网络奠定了基础。