Sala Stefano, Catillon Marie, Hadzic Ermin, Schaffner-Reckinger Elisabeth, Van Troys Marleen, Ampe Christophe
Department of Biochemistry, Ghent University, Ghent, Belgium.
Cytoskeleton and Cell Plasticity Lab, Life Sciences Research Unit - FSTC, University of Luxembourg, Luxembourg, Luxembourg.
PLoS One. 2017 May 18;12(5):e0177879. doi: 10.1371/journal.pone.0177879. eCollection 2017.
The focal adhesion protein testin is a modular scaffold and tumour suppressor that consists of an N-terminal cysteine rich (CR) domain, a PET domain of unknown function and three C-terminal LIM domains. Testin has been proposed to have an open and a closed conformation based on the observation that its N-terminal half and C-terminal half directly interact. Here we extend the testin conformational model by demonstrating that testin can also form an antiparallel homodimer. In support of this extended model we determined that the testin region (amino acids 52-233) harbouring the PET domain interacts with the C-terminal LIM1-2 domains in vitro and in cells, and assign a critical role to tyrosine 288 in this interaction.
粘着斑蛋白testin是一种模块化支架和肿瘤抑制因子,由一个富含N端半胱氨酸(CR)结构域、一个功能未知的PET结构域和三个C端LIM结构域组成。基于其N端半部分和C端半部分直接相互作用的观察结果,有人提出testin具有开放和闭合两种构象。在这里,我们通过证明testin也可以形成反平行同源二聚体来扩展testin构象模型。为支持这一扩展模型,我们确定了包含PET结构域的testin区域(氨基酸52 - 233)在体外和细胞中与C端LIM1 - 2结构域相互作用,并确定酪氨酸288在这种相互作用中起关键作用。