Jacobs Doris M, Saxena Krishna, Vogtherr Martin, Bernado Pau, Pons Miquel, Fiebig Klaus M
Institut für Organische Chemie und Chemische Biologie, Johann Wolfgang Goethe-Universität Frankfurt, Marie-Curie Strasse 11, 60439 Frankfurt, Germany.
J Biol Chem. 2003 Jul 11;278(28):26174-82. doi: 10.1074/jbc.M300796200. Epub 2003 Apr 9.
Pin1 is a peptidyl-prolyl cis/trans isomerase (PPIase) essential for cell cycle regulation. Pin1-catalyzed peptidyl-prolyl isomerization provides a key conformational switch to activate phosphorylation sites with the common phospho-Ser/Thr-Pro sequence motif. This motif is ubiquitously exploited in cellular response to a variety of signals. Pin1 is able to bind phospho-Ser/Thr-Pro-containing sequences at two different sites that compete for the same substrate. One binding site is located within the N-terminal WW domain, which is essential for protein targeting and localization. The other binding site is located in the C-terminal catalytic domain, which is structural homologous to the FK506-binding protein (FKBP) class of PPIases. A flexible linker of 12 residues connects the WW and catalytic domain. To characterize the structure and dynamics of full-length Pin1 in solution, high resolution NMR methods have been used to map the nature of interactions between the two domains of Pin1. In addition, the influence of target peptides on domain interactions has been investigated. The studies reveal a dynamic picture of the domain interactions. 15N spin relaxation data, differential chemical shift mapping, and residual dipolar coupling data indicate that Pin1 can either behave as two independent domains connected by the flexible linker or as a single intact domain with some amount of hinge bending motion depending on the sequence of the bound peptide. The functional importance of the modulation of relative domain flexibility in light of the multitude of interaction partners of Pin1 is discussed.
Pin1是一种对细胞周期调控至关重要的肽基脯氨酰顺反异构酶(PPIase)。Pin1催化的肽基脯氨酰异构化提供了一个关键的构象转换,以激活具有常见磷酸化丝氨酸/苏氨酸-脯氨酸序列基序的磷酸化位点。该基序在细胞对各种信号的反应中被广泛利用。Pin1能够在两个不同的位点结合含磷酸化丝氨酸/苏氨酸-脯氨酸的序列,这两个位点竞争相同的底物。一个结合位点位于N端WW结构域内,这对蛋白质靶向和定位至关重要。另一个结合位点位于C端催化结构域,其在结构上与PPIase的FK506结合蛋白(FKBP)类同源。一个由12个残基组成的柔性接头连接WW结构域和催化结构域。为了表征溶液中全长Pin1的结构和动力学,已使用高分辨率核磁共振方法来绘制Pin1两个结构域之间相互作用的性质。此外,还研究了靶肽对结构域相互作用的影响。这些研究揭示了结构域相互作用的动态图景。15N自旋弛豫数据、化学位移差分图谱和剩余偶极耦合数据表明,Pin1既可以表现为由柔性接头连接的两个独立结构域,也可以表现为具有一定程度铰链弯曲运动的单个完整结构域,这取决于结合肽段的序列。本文讨论了鉴于Pin1众多相互作用伙伴,调节相对结构域灵活性的功能重要性。