Department of Anesthesiology and Perioperative Medicine, University of Rochester Medical Center, Rochester, New York, USA.
J Cell Biochem. 2022 Jan;123(1):4-21. doi: 10.1002/jcb.29952. Epub 2021 May 14.
The multi-domain structure of Bcl-2-associated athanogene 3 (BAG3) facilitates its interaction with many different proteins that participate in regulating a variety of biological pathways. After revisiting the BAG3 literature published over the past ten years with Citespace software, we classified the BAG3 research into several clusters, including cancer, cardiomyopathy, neurodegeneration, and viral propagation. We then highlighted recent key findings in each cluster. To gain greater insight into the roles of BAG3, we analyzed five different published mass spectrometry data sets of proteins that co-immunoprecipitate with BAG3. These data gave us insight into universal, as well as cell-type-specific BAG3 interactors in cancer cells, cardiomyocytes, and neurons. Finally, we mapped variable BAG3 SNPs and also mutation data from previous publications to further explore the link between the domains and function of BAG3. We believe this review will provide a better understanding of BAG3 and direct future studies towards understanding BAG3 function in physiological and pathological conditions.
Bcl-2 相关抗凋亡基因 3(BAG3)的多结构域结构使其能够与许多不同的蛋白相互作用,这些蛋白参与调节多种生物学途径。我们利用 Citespace 软件重新回顾了过去十年发表的 BAG3 文献,将 BAG3 的研究分为几个领域,包括癌症、心肌病、神经退行性疾病和病毒传播。然后,我们突出了每个领域的最新关键发现。为了更深入地了解 BAG3 的作用,我们分析了五个不同的已发表的与 BAG3 共免疫沉淀的蛋白质的质谱数据集。这些数据使我们能够深入了解癌症细胞、心肌细胞和神经元中 BAG3 的普遍以及细胞类型特异性相互作用子。最后,我们将 BAG3 的可变 SNP 和来自先前出版物的突变数据映射出来,以进一步探讨 BAG3 结构域和功能之间的联系。我们相信,这篇综述将更好地理解 BAG3,并指导未来的研究以了解 BAG3 在生理和病理条件下的功能。