Occhino Marzia, Ghiotto Fabio, Soro Simonetta, Mortarino Mimosa, Bosi Stefania, Maffei Massimo, Bruno Silvia, Nardini Marco, Figini Mariangela, Tramontano Anna, Ciccone Ermanno
Department of Experimental Medicine, University of Genoa, Genoa, Italy.
J Immunol. 2008 Jan 15;180(2):957-68. doi: 10.4049/jimmunol.180.2.957.
UL18 is a glycoprotein encoded by the human cytomegalovirus genome and is thought to play a pivotal role during human cytomegalovirus infection, although its exact function is still a matter of debate. UL18 shares structural similarity with MHC class I and binds the receptor CD85j on immune cells. Besides UL18, CD85j binds MHC class I molecules. The binding properties of CD85j to MHC class I molecules have been thoroughly studied. Conversely, very little information is available on the CD85j/UL18 complex, namely that UL18 binds CD85j through its alpha3 domain with an affinity that is approximately 1000-fold higher than the MHC class I affinity for CD85j. Deeper knowledge of features of the UL18/CD85j complex would help to disclose the function of UL18 when it binds to CD85j. In this study we first demonstrated that the UL18alpha3 domain is not sufficient per se for binding and that beta2-microglobulin is necessary for UL18-CD85j interaction. We then dissected structural determinants of binding UL18 to CD85j. To this end, we constructed a three-dimensional model of the complex. The model was used to design mutants in selected regions of the putative interaction interface, the effects of which were measured on binding. Six regions in both the alpha2 and alpha3 domains and specific amino acids within them were identified that are potentially involved in the UL18-CD85j interaction. The higher affinity of UL18 to CD85j, compared with MHC class I, seems to be due not to additional interaction regions but to an overall better fit of the two molecules.
UL18是一种由人类巨细胞病毒基因组编码的糖蛋白,尽管其确切功能仍存在争议,但被认为在人类巨细胞病毒感染过程中起关键作用。UL18与MHC I类分子在结构上具有相似性,并与免疫细胞上的受体CD85j结合。除了UL18,CD85j还与MHC I类分子结合。CD85j与MHC I类分子的结合特性已得到深入研究。相反,关于CD85j/UL18复合物的信息却非常少,即UL18通过其α3结构域与CD85j结合,其亲和力比MHC I类分子对CD85j的亲和力高约1000倍。深入了解UL18/CD85j复合物的特征将有助于揭示UL18与CD85j结合时的功能。在本研究中,我们首先证明了UL18α3结构域本身不足以进行结合,β2-微球蛋白对于UL18与CD85j的相互作用是必需的。然后,我们剖析了UL18与CD85j结合的结构决定因素。为此,我们构建了该复合物的三维模型。该模型用于设计假定相互作用界面选定区域的突变体,并测量其对结合的影响。在α2和α3结构域中确定了六个区域以及其中的特定氨基酸,它们可能参与UL18与CD85j的相互作用。与MHC I类分子相比,UL18对CD85j的亲和力更高,这似乎不是由于额外的相互作用区域,而是由于这两个分子的整体匹配更好。