表位
生物
打开阅读框
分子生物学
肽序列
细胞内
氨基酸
跨膜结构域
分子克隆
生物化学
抗原
基因
遗传学
作者
C R Maliszewski,G. Delespesse,Michael A. Schoenborn,Richard J. Armitage,William C. Fanslow,Toshio Nakajima,Elizabeth Baker,Grant R. Sutherland,Kurt Poindexter,Carl Birks
出处
期刊:Journal of Immunology
[The American Association of Immunologists]
日期:1994-10-15
卷期号:153 (8): 3574-3583
被引量:233
标识
DOI:10.4049/jimmunol.153.8.3574
摘要
Abstract CD39, a 70- to 100-kDa molecule expressed primarily on activated lymphoid cells, was previously shown to mediate B cell homotypic adhesion when ligated with a subset of anti-CD39 mAbs. In the present study, we describe the cloning and molecular characterization of human and murine CD39. The nucleotide sequence of human CD39 includes an open reading frame encoding a putative 510 amino acid protein with six potential N-linked glycosylation sites, 11 Cys residues, and two potential transmembrane regions. Murine CD39 shares 75% amino acid sequence identity with human CD39 but fails to cross-react with anti-human CD39 mAbs. Although there were no significant similarities with other mammalian genes, considerable homology was found between CD39 and a guanosine diphosphatase from yeast. A series of mouse-human hybrid molecules was constructed to determine the general topology of CD39 and the location of a biologically functional epitope. These findings and supporting evidence from an anti-CD39 mAb-selected phage peptide display library indicate a likely model wherein a short intracellular N-terminus is followed by a large extracellular loop containing the epitope recognized by stimulatory anti-CD39 mAbs, and a short intracellular C terminus. The results demonstrate that CD39 is a novel cell surface glycoprotein with unusual structural characteristics.
科研通智能强力驱动
Strongly Powered by AbleSci AI