兰格林
生物
伯贝克颗粒
互补DNA
分子生物学
细胞生物学
树突状细胞
C型凝集素
脾脏
基因
凝集素
朗格汉斯细胞
免疫学
免疫系统
遗传学
作者
Jenny Valladeau,Valérie Clair‐Moninot,Colette Dezutter‐Dambuyant,Jean‐Jacques Pin,Adrien Kissenpfennig,Marie‐Geneviève Mattéi,Smina Aït‐Yahia,Elizabeth E. M. Bates,Bernard Malissen,Franz Koch,François Fossiez,Nikolaus Romani,Serge Lebecque,Sem Saeland
出处
期刊:Journal of Immunology
[American Association of Immunologists]
日期:2002-01-15
卷期号:168 (2): 782-792
被引量:161
标识
DOI:10.4049/jimmunol.168.2.782
摘要
Abstract Human (h)Langerin/CD207 is a C-type lectin of Langerhans cells (LC) that induces the formation of Birbeck granules (BG). In this study, we have cloned a cDNA-encoding mouse (m)Langerin. The predicted protein is 66% homologous to hLangerin with conservation of its particular features. The organization of human and mouse Langerin genes are similar, consisting of six exons, three of which encode the carbohydrate recognition domain. The mLangerin gene maps to chromosome 6D, syntenic to the human gene on chromosome 2p13. mLangerin protein, detected by a mAb as a 48-kDa species, is abundant in epidermal LC in situ and is down-regulated upon culture. A subset of cells also expresses mLangerin in bone marrow cultures supplemented with TGF-β. Notably, dendritic cells in thymic medulla are mLangerin-positive. By contrast, only scattered cells express mLangerin in lymph nodes and spleen. mLangerin mRNA is also detected in some nonlymphoid tissues (e.g., lung, liver, and heart). Similarly to hLangerin, a network of BG form upon transfection of mLangerin cDNA into fibroblasts. Interestingly, substitution of a conserved residue (Phe244 to Leu) within the carbohydrate recognition domain transforms the BG in transfectant cells into structures resembling cored tubules, previously described in mouse LC. Our findings should facilitate further characterization of mouse LC, and provide insight into a plasticity of dendritic cell organelles which may have important functional consequences.
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