Department of Health Sciences, University of Piemonte Orientale (UPO), Novara, Italy.
Interdisciplinary Research Center on Autoimmune Diseases (IRCAD), University of Piemonte Orientale (UPO), Novara, Italy.
FASEB J. 2019 Feb;33(2):2327-2342. doi: 10.1096/fj.201800054RRR. Epub 2018 Oct 4.
The interaction between the enzyme transglutaminase 2 (TG2) and fibronectin (FN) is involved in the cell-matrix interactions that regulate cell signaling, adhesion, and migration and play central roles in pathologic conditions, particularly fibrosis and cancer. A precise definition of the exact interaction domains on both proteins could provide a tool to design novel molecules with potential therapeutic applications. Although specific residues involved in the interaction within TG2 have been analyzed, little is known regarding the TG2 binding site on FN. This site has been mapped to a large internal 45-kDa protein fragment coincident with the gelatin binding domain (GBD). With the goal of defining the minimal FN interacting domain for TG2, we produced several expression constructs encoding different portions or modules of the GBD and tested their binding and functional properties. The results demonstrate that the I module is necessary and sufficient for TG2-binding in vitro, but does not have functional effects on TG2-expressing cells. Modules I and I increase the strength of the binding and are required for cell adhesion. A 15-kDa fragment encompassing modules I behaves as the whole 45-kDa GBD and mediates signaling, adhesion, spreading, and migration of TG2 cells. This study provides new insights into the mechanism for TG2 binding to FN.-Soluri, M. F., Boccafoschi, F., Cotella, D., Moro, L., Forestieri, G., Autiero, I., Cavallo, L., Oliva, R., Griffin, M., Wang, Z., Santoro, C., Sblattero, D. Mapping the minimum domain of the fibronectin binding site on transglutaminase 2 (TG2) and its importance in mediating signaling, adhesion, and migration in TG2-expressing cells.
转谷氨酰胺酶 2(TG2)与纤连蛋白(FN)之间的相互作用涉及细胞基质相互作用,这些相互作用调节细胞信号转导、黏附和迁移,并在病理状态(特别是纤维化和癌症)中发挥核心作用。精确定义这两种蛋白质上的确切相互作用域,可以提供一种工具来设计具有潜在治疗应用的新型分子。尽管已经分析了涉及 TG2 相互作用的特定残基,但关于 FN 上的 TG2 结合位点知之甚少。该位点已映射到一个与明胶结合域(GBD)一致的大的内部 45kDa 蛋白片段。为了定义 TG2 与 FN 的最小相互作用域,我们生成了几个表达构建体,编码 GBD 的不同部分或模块,并测试了它们的结合和功能特性。结果表明,I 模块是体外 TG2 结合所必需的和充分的,但对表达 TG2 的细胞没有功能影响。模块 I 和 I 增加了结合的强度,并对细胞黏附是必需的。包含模块 I 的 15kDa 片段表现为整个 45kDa GBD,并介导 TG2 细胞的信号转导、黏附和迁移。这项研究为 TG2 与 FN 结合的机制提供了新的见解。