Villari Giulia, Gioelli Noemi, Gino Marta, Zhang Heng, Hodge Kelly, Cordero Francesca, Zanivan Sara, Zhu Jieqing, Serini Guido
Department of Oncology, University of Torino School of Medicine, Candiolo, TO, Italy; Candiolo Cancer Institute - Fondazione del Piemonte per l'Oncologia (FPO) Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS), Candiolo, TO, Italy.
Candiolo Cancer Institute - Fondazione del Piemonte per l'Oncologia (FPO) Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS), Candiolo, TO, Italy.
Cell Rep. 2025 Feb 25;44(2):115319. doi: 10.1016/j.celrep.2025.115319. Epub 2025 Feb 17.
Integrins are major receptors for secreted extracellular matrix, playing crucial roles in physiological and pathological contexts, such as angiogenesis and cancer. Regulation of the transition between inactive and active conformation is key for integrins to fulfill their functions, and pharmacological control of those dynamics may have therapeutic applications. We create and validate a prototypic luminescent β1 integrin activation sensor (β1IAS) by introducing a split luciferase into an activation reporting site between the βI and the hybrid domains. As a recombinant protein in both solution and living cells, β1IAS accurately reports β1 integrin activation in response to (bio)chemical and physical stimuli. A short interfering RNA (siRNA) high-throughput screening on live β1IAS knockin endothelial cells unveils hitherto unknown regulators of β1 integrin activation, such as β1 integrin inhibitors E3 ligase Pja2 and vascular endothelial growth factor B (VEGF-B). This split-luciferase-based strategy provides an in situ label-free measurement of integrin activation and may be applicable to other β integrins and receptors.
整合素是分泌型细胞外基质的主要受体,在诸如血管生成和癌症等生理和病理过程中发挥着关键作用。调节整合素非活性构象与活性构象之间的转变是其发挥功能的关键,对这些动力学进行药理学控制可能具有治疗应用价值。我们通过将一种分裂型荧光素酶引入βI和杂合结构域之间的激活报告位点,创建并验证了一种原型发光β1整合素激活传感器(β1IAS)。作为溶液中和活细胞中的重组蛋白,β1IAS能够准确报告β1整合素在(生物)化学和物理刺激下的激活情况。对表达β1IAS的内皮细胞进行的短发夹RNA(shRNA)高通量筛选揭示了迄今未知的β1整合素激活调节因子,如β1整合素抑制剂E3连接酶Pja2和血管内皮生长因子B(VEGF-B)。这种基于分裂型荧光素酶的策略提供了一种原位无标记的整合素激活测量方法,可能适用于其他β整合素和受体。