Fedarovich Alena, Tomberg Joshua, Nicholas Robert A, Davies Christopher
Department of Biochemistry and Molecular Biology, Medical University of South Carolina, Charleston, SC 29425, USA.
Acta Crystallogr D Biol Crystallogr. 2006 Sep;62(Pt 9):971-9. doi: 10.1107/S0907444906020737. Epub 2006 Aug 19.
CEACAM1 is a cellular adhesion molecule whose protein expression is down-regulated in several carcinomas and which also contributes to the pathogenicity of Neisseria by acting as a receptor for Opa proteins. The crystal structure of the N-terminal (D1) domain of human CEACAM1 has been determined at 2.2 Angstrom resolution. The structure shows several differences compared with a lower resolution model of the same domain from mouse solved previously, especially in the functional regions. Mapping of the sites of mutations that lower or abolish the binding of CEACAM1 to Opa proteins shows a distinct clustering of residues on the GFCC'C'' face of the molecule. Prominent amongst these are residues in the C, C' and F strands and the CC' loop. A similar analysis shows that the region responsible for homophilic or heterophilic interactions of CEACAM1 is also on the GFCC'C'' face and overlaps partially with the Opa-binding region. This higher resolution structure of CEACAM1 will facilitate a more precise dissection of its functional regions in the context of neisserial pathogenesis, cellular adhesion and immune evasion.
癌胚抗原相关细胞黏附分子1(CEACAM1)是一种细胞黏附分子,其蛋白表达在多种癌症中下调,并且通过作为Opa蛋白的受体,也参与了奈瑟菌的致病性。人CEACAM1 N端(D1)结构域的晶体结构已在2.2埃分辨率下确定。该结构与先前解析的小鼠同一结构域的低分辨率模型相比显示出一些差异,特别是在功能区域。对降低或消除CEACAM1与Opa蛋白结合的突变位点的定位显示,分子的GFCC'C''面上的残基明显聚集。其中突出的是C、C'和F链以及CC'环中的残基。类似的分析表明,负责CEACAM1同源或异源相互作用的区域也在GFCC'C''面上,并且与Opa结合区域部分重叠。CEACAM1的这种更高分辨率结构将有助于在奈瑟菌发病机制、细胞黏附和免疫逃逸的背景下更精确地剖析其功能区域。