Kalli K R, Fearon D T
Graduate Program in Immunology, Johns Hopkins University School of Medicine, Baltimore, MD 21205.
J Immunol. 1994 Mar 15;152(6):2899-903.
We determined whether the six short consensus repeats (SCRs) that are appended to the amino terminus of murine CR2 to form murine CR1 contain a binding site for C4b in addition to that for C3b, and whether these sites overlap or are distinct. Human K562 transfectant cell lines were established that stably expressed constructs encoding variable combinations of these six murine SCRs attached to the amino terminus of a truncated form of human CR2 lacking its iC3b/C3dg binding site. These cell lines, and two others expressing full-length human CR1 and SCRs lacking its iC3b/C3dg binding site. These cell lines, and two others expressing full-length human CR1 and SCRs 8-11 of the C3b binding site of human CR1, respectively, were assessed for their capacity to form rosettes with sheep E bearing rat C4b or guinea pig C3b. K562 cells with full length human CR1 formed rosettes with both EC3b and EC4b, and the cells expressing the construct with human CR1 SCRs 8-11 bound only EC3b. The murine CR1/human CR2 chimera containing murine SCRs 1-6 resembled the full length human CR1 in binding both EC3b and EC4b. Deletion of SCRs 5-6 from the murine CR1/human CR2 chimera diminished in parallel, but did not abolish, binding of EC3b and EC4b. Constructs containing SCRs 2-5, SCRs 3-6, or SCRs 2-6 lacked activity, indicating an absolute requirement for SCR-1 for binding of both C3b and C4b. Therefore, murine CR1 binds both C3b and C4b, and the sites for these ligands have similar, if not identical, amino- and carboxyl-terminal boundaries.
我们确定了连接到鼠CR2氨基末端以形成鼠CR1的六个短共有重复序列(SCR)除了含有C3b结合位点外,是否还含有C4b结合位点,以及这些位点是重叠还是不同。建立了人K562转染细胞系,其稳定表达编码这些六个鼠SCR可变组合的构建体,这些构建体连接到缺乏iC3b/C3dg结合位点的截短形式的人CR2的氨基末端。评估了这些细胞系以及另外两个分别表达全长人CR1和人CR1 C3b结合位点的SCR 8 - 11的细胞系与带有大鼠C4b或豚鼠C3b的绵羊E形成玫瑰花结的能力。具有全长人CR1的K562细胞与EC3b和EC4b都形成玫瑰花结,而表达含有人CR1 SCR 8 - 11构建体的细胞只结合EC3b。含有鼠SCR 1 - 6的鼠CR1/人CR2嵌合体在结合EC3b和EC4b方面类似于全长人CR1。从鼠CR1/人CR2嵌合体中缺失SCR 5 - 6会平行降低但不会消除EC3b和EC4b的结合。含有SCR 2 - 5、SCR 3 - 6或SCR 2 - 6的构建体缺乏活性,表明C3b和C4b结合对SCR - 1有绝对需求。因此,鼠CR1结合C3b和C4b,并且这些配体的位点具有相似(如果不是相同)的氨基和羧基末端边界。