Pröpper C, Huang X, Roth J, Sorg C, Nacken W
Institute of Experimental Dermatology, Münster Medical School, Von-Esmarch Strasse 56, D-48149 Münster, Germany.
J Biol Chem. 1999 Jan 1;274(1):183-8. doi: 10.1074/jbc.274.1.183.
Calcium-binding S100 proteins are thought to play a central role in calcium-mediated signal transduction pathways. They consist of two helix-loop-helix, calcium-binding EF-hand domains. A characteristic feature is their tendency to form homo- and/or heterodimeric complexes. This report presents for the first time a functional "in vivo" approach to the analysis of S100 protein dimerization. Using the two-hybrid system we analyzed the dimerization of MRP8 (S100A8) and MRP14 (S100A9), two S100 proteins expressed in myeloid cells. It is reported that the MRP8-MRP14 heteromer is the clearly preferred complex in both man and mouse. The ability to homodimerize, however, appears to be restricted to the murine MRPs. Interaction analysis of chimeric murine/human MRP14 proteins indicates, that the C-terminal EF-hand domain plays a prominent role in MRP8-MRP14 interaction and determines the specificity of dimerization. Site-directed mutagenesis of four evolutionary conserved hydrophobic amino acids, which have been recently supposed to be essential for S100 protein dimerization, suggests that at least one of these, namely the most N-terminal located residue, is not critical for dimerization.
钙结合S100蛋白被认为在钙介导的信号转导途径中起核心作用。它们由两个螺旋-环-螺旋钙结合EF手结构域组成。一个特征是它们倾向于形成同二聚体和/或异二聚体复合物。本报告首次提出了一种功能性的“体内”方法来分析S100蛋白二聚化。利用双杂交系统,我们分析了髓样细胞中表达的两种S100蛋白MRP8(S100A8)和MRP14(S100A9)的二聚化。据报道,MRP8-MRP14异源二聚体在人和小鼠中都是明显更受青睐的复合物。然而,同二聚化能力似乎仅限于小鼠的MRP。嵌合的鼠/人MRP14蛋白的相互作用分析表明,C末端EF手结构域在MRP8-MRP14相互作用中起重要作用,并决定二聚化的特异性。最近认为对S100蛋白二聚化至关重要的四个进化保守疏水氨基酸的定点诱变表明,其中至少一个,即最N末端的残基,对二聚化并不关键。