Martin Jennifer N, Ball Louise M, Solomon Tsega L, Dewald Alison H, Criss Alison K, Columbus Linda
Department of Chemistry and ‡Department of Microbiology, Immunology, and Cancer Biology, University of Virginia , Charlottesville, Virginia 22903, United States.
Biochemistry. 2016 Aug 9;55(31):4286-94. doi: 10.1021/acs.biochem.6b00124. Epub 2016 Aug 1.
Carcino-embryonic antigen-like cellular adhesion molecules (CEACAMs), members of the immunoglobulin superfamily, are responsible for cell-cell interactions and cellular signaling events. Extracellular interactions with CEACAMs have the potential to induce phagocytosis, as is the case with pathogenic Neisseria bacteria. Pathogenic Neisseria species express opacity-associated (Opa) proteins, which interact with a subset of CEACAMs on human cells, and initiate the engulfment of the bacterium. We demonstrate that recombinant Opa proteins reconstituted into liposomes retain the ability to recognize and interact with CEACAMs in vitro but do not maintain receptor specificity compared to that of Opa proteins natively expressed by Neisseria gonorrhoeae. We report that two Opa proteins interact with CEACAMs with nanomolar affinity, and we hypothesize that this high affinity is necessary to compete with the native CEACAM homo- and heterotypic interactions in the host. Understanding the mechanisms of Opa protein-receptor recognition and engulfment enhances our understanding of Neisserial pathogenesis. Additionally, these mechanisms provide insight into how human cells that are typically nonphagocytic can utilize CEACAM receptors to internalize exogenous matter, with implications for the targeted delivery of therapeutics and development of imaging agents.
癌胚抗原样细胞粘附分子(CEACAMs)是免疫球蛋白超家族的成员,负责细胞间相互作用和细胞信号传导事件。与CEACAMs的细胞外相互作用有可能诱导吞噬作用,致病性奈瑟菌就是如此。致病性奈瑟菌属表达与透明度相关的(Opa)蛋白,该蛋白与人类细胞上的一部分CEACAMs相互作用,并引发细菌的吞噬。我们证明,重组到脂质体中的Opa蛋白在体外保留了识别CEACAMs并与之相互作用的能力,但与淋病奈瑟菌天然表达的Opa蛋白相比,不保持受体特异性。我们报道,两种Opa蛋白以纳摩尔亲和力与CEACAMs相互作用,并且我们假设这种高亲和力对于与宿主中天然的CEACAM同源和异源相互作用竞争是必要的。了解Opa蛋白-受体识别和吞噬的机制有助于我们理解奈瑟菌的发病机制。此外,这些机制为典型的非吞噬性人类细胞如何利用CEACAM受体内化外源性物质提供了见解,这对治疗药物的靶向递送和成像剂的开发具有启示意义。