Iglesias-Bexiga Manuel, Castillo Francisco, Cobos Eva S, Oka Tsutomu, Sudol Marius, Luque Irene
Department of Physical Chemistry and Institute of Biotechnology, Faculty of Sciences, University of Granada, 18071, Granada, Spain.
Weis Center for Research, Geisinger Clinic, M.C. 26-08, 100 North Academy Avenue, Danville, PA, 17822-2608, United States of America.
PLoS One. 2015 Jan 21;10(1):e0113828. doi: 10.1371/journal.pone.0113828. eCollection 2015.
YAP is a WW domain-containing effector of the Hippo tumor suppressor pathway, and the object of heightened interest as a potent oncogene and stemness factor. YAP has two major isoforms that differ in the number of WW domains they harbor. Elucidating the degree of co-operation between these WW domains is important for a full understanding of the molecular function of YAP. We present here a detailed biophysical study of the structural stability and binding properties of the two YAP WW domains aimed at investigating the relationship between both domains in terms of structural stability and partner recognition. We have carried out a calorimetric study of the structural stability of the two YAP WW domains, both isolated and in a tandem configuration, and their interaction with a set of functionally relevant ligands derived from PTCH1 and LATS kinases. We find that the two YAP WW domains behave as independent units with different binding preferences, suggesting that the presence of the second WW domain might contribute to modulate target recognition between the two YAP isoforms. Analysis of structural models and phage-display studies indicate that electrostatic interactions play a critical role in binding specificity. Together, these results are relevant to understand of YAP function and open the door to the design of highly specific ligands of interest to delineate the functional role of each WW domain in YAP signaling.
YAP是Hippo肿瘤抑制通路中含WW结构域的效应分子,作为一种强大的癌基因和干性因子备受关注。YAP有两种主要的异构体,它们所含WW结构域的数量不同。阐明这些WW结构域之间的协同程度对于全面理解YAP的分子功能至关重要。我们在此展示了一项针对YAP的两个WW结构域的结构稳定性和结合特性的详细生物物理研究,旨在从结构稳定性和伴侣识别方面研究两个结构域之间的关系。我们对两个YAP WW结构域(单独的以及串联形式的)的结构稳定性以及它们与一组源自PTCH1和LATS激酶的功能相关配体的相互作用进行了量热研究。我们发现这两个YAP WW结构域表现为具有不同结合偏好的独立单元,这表明第二个WW结构域的存在可能有助于调节两种YAP异构体之间的靶标识别。结构模型分析和噬菌体展示研究表明,静电相互作用在结合特异性中起关键作用。总之,这些结果对于理解YAP功能具有重要意义,并为设计高度特异性的配体以阐明每个WW结构域在YAP信号传导中的功能作用打开了大门。