Takeuchi Koh, Sun Zhen-Yu J, Li Shuai, Gal Maayan, Wagner Gerhard
Department of Biochemistry and Molecular Pharmacology, Harvard Medical School, 240 Longwood Avenue, Boston, MA, 02115, USA,
Biomol NMR Assign. 2015 Apr;9(1):201-5. doi: 10.1007/s12104-014-9574-y. Epub 2014 Sep 11.
Calcineurin (Cn) is a serine/threonine phosphatase that plays pivotal roles in many physiological processes. In T cell, Cn targets the nuclear factors of activated T-cell (NFATs), transcription factors that activate cytokine genes. Elevated intracellular calclium concentration activates Cn to dephosphorylate multiple serine residues within the NFAT regulatory domain, which triggers joint nuclear translocation of NFAT and Cn. This relies on the interaction between the catalytic domain of Cn (CnA) and the conserved PxIxIT motif. Here, we present the assignment of CnA resonances in unligated form and in complex with a 14-residue peptide containing a PVIVIT sequence that was derived from affinity driven peptide selection based on the conserved PxIxIT motif of NFATs. Although a complete assignment was not possible mainly due to the paramagnetic line broadening induced by an iron in the CnA catalytic center, the assignment was extensively verified by amino-acid selective labeling of Arg, Leu, Lys, and Val, which cover one third of the CnA residues. Nevertheless, the assignments were used to determine the structure of the CnA-PVIVIT peptide complex and provide the basis for investigation of the interactions of CnA with physiological interaction partners and small organic compounds that disrupt the Cn-NFAT interaction.
钙调神经磷酸酶(Cn)是一种丝氨酸/苏氨酸磷酸酶,在许多生理过程中发挥关键作用。在T细胞中,Cn作用于活化T细胞的核因子(NFATs),即激活细胞因子基因的转录因子。细胞内钙离子浓度升高会激活Cn,使其使NFAT调节域内的多个丝氨酸残基去磷酸化,从而触发NFAT和Cn的联合核转位。这依赖于Cn的催化结构域(CnA)与保守的PxIxIT基序之间的相互作用。在此,我们给出了未结合形式的CnA以及与一个含有PVIVIT序列的14个残基肽段形成复合物时的共振归属,该肽段是基于NFATs的保守PxIxIT基序通过亲和驱动肽段筛选得到的。尽管主要由于CnA催化中心的铁导致的顺磁线宽展,无法完成完整的归属,但通过对Arg、Leu、Lys和Val的氨基酸选择性标记对归属进行了广泛验证,这些氨基酸覆盖了CnA残基的三分之一。尽管如此,这些归属被用于确定CnA-PVIVIT肽段复合物的结构,并为研究CnA与生理相互作用伙伴以及破坏Cn-NFAT相互作用的小有机化合物之间的相互作用提供了基础。