Ojala Juha R M, Pikkarainen Timo, Tuuttila Ari, Sandalova Tatyana, Tryggvason Karl
Division of Matrix Biology, Department of Medical Biochemistry and Biophysics, Karolinska Institutet, S-17177 Stockholm, Sweden.
J Biol Chem. 2007 Jun 1;282(22):16654-66. doi: 10.1074/jbc.M701750200. Epub 2007 Apr 3.
MARCO is a trimeric class A scavenger receptor of macrophages and dendritic cells that recognizes polyanionic particles and pathogens. The distal, scavenger receptor cysteine-rich (SRCR) domain of the extracellular part of this receptor has been implicated in ligand binding. To provide a structural basis for understanding the ligand-binding mechanisms of MARCO, we have determined the crystal structure of the mouse MARCO SRCR domain. The recombinant SRCR domain purified as monomeric and dimeric forms, and their structures were determined at 1.78 and 1.77 A resolution, respectively. The monomer has a compact globular fold with a twisted five-stranded antiparallel beta-sheet and a long loop covering a single alpha-helix, whereas the dimer is formed via beta-strand swapping of two monomers, thus containing a large eight-stranded beta-sheet. Calculation of the surface electrostatic potential revealed that the beta-sheet region with several arginines forms a basic cluster. Unexpectedly, an acidic cluster was found in the long loop region. In the monomer, the acidic cluster is involved in metal ion binding. Studies with cells expressing various SRCR domain mutants showed that all of the arginines of the basic cluster are involved in ligand binding, suggesting a cooperative binding mechanism. Ligand binding is also dependent on the acidic cluster and Ca2+ ions whose depletion appears to affect ligand binding at least by modulating the electrostatic potential or relative domain orientation. We propose that the SRCR domain dimerization can contribute to the recognition of large ligands by providing a means for the MARCO receptor oligomerization.
MARCO是巨噬细胞和树突状细胞的三聚体A类清道夫受体,可识别多阴离子颗粒和病原体。该受体细胞外部分的远端富含清道夫受体半胱氨酸(SRCR)结构域与配体结合有关。为了提供理解MARCO配体结合机制的结构基础,我们测定了小鼠MARCO SRCR结构域的晶体结构。重组SRCR结构域以单体和二聚体形式纯化,其结构分别在1.78 Å和1.77 Å分辨率下测定。单体具有紧密的球状折叠,有一个扭曲的五链反平行β-折叠片和一个覆盖单个α-螺旋的长环,而二聚体是通过两个单体的β-链交换形成的,因此包含一个大的八链β-折叠片。表面静电势的计算表明,含有几个精氨酸的β-折叠片区域形成一个碱性簇。出乎意料的是,在长环区域发现了一个酸性簇。在单体中,酸性簇参与金属离子结合。对表达各种SRCR结构域突变体的细胞进行的研究表明,碱性簇中的所有精氨酸都参与配体结合,提示存在协同结合机制。配体结合也依赖于酸性簇和Ca2+离子,其消耗似乎至少通过调节静电势或相对结构域取向来影响配体结合。我们提出,SRCR结构域二聚化可通过为MARCO受体寡聚化提供一种方式,有助于识别大配体。