Rath Arianna, Davidson Alan R, Deber Charles M
Division of Structural Biology & Biochemistry, Research Institute, Hospital for Sick Children, Toronto M5G 1X8, Ontario, Canada.
Biopolymers. 2005;80(2-3):179-85. doi: 10.1002/bip.20227.
Classical descriptions of the three-dimensional shapes of proteins usually invoke three main structures: alpha-helix, beta-sheet, and beta-turn. More recently, the polyproline II (PPII) structure has been implicated in diverse biological activities including signal transduction, transcription, cell motility, and immune response. Concurrently, evidence is accumulating that PPII structure has a significant role in the unfolded states of proteins. In this article, we connect the structural properties of PPII helices to their roles in protein recognition and protein unfolded states. The properties unique to the PPII conformation are linked to the exploitation of this structure for the molecular recognition of proteins, using peptide ligands of the Src homology 3 (SH3) domain as an example. The evidence supporting a role for PPII conformation in protein-unfolded states is also presented in the context of the forces that may stabilize the PPII conformation in unfolded polypeptides.
α-螺旋、β-折叠和β-转角。最近,多聚脯氨酸II(PPII)结构被认为参与了多种生物活性,包括信号转导、转录、细胞运动和免疫反应。与此同时,越来越多的证据表明PPII结构在蛋白质的未折叠状态中起着重要作用。在本文中,我们将PPII螺旋的结构特性与其在蛋白质识别和蛋白质未折叠状态中的作用联系起来。以Src同源3(SH3)结构域的肽配体为例,PPII构象独特的特性与利用该结构进行蛋白质分子识别相关联。在可能稳定未折叠多肽中PPII构象的力的背景下,也阐述了支持PPII构象在蛋白质未折叠状态中作用的证据。