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Title 

Expression of human NDRG2 by myeloid dendritic cells inhibits down-regulation of activated leukocyte cell adhesion molecule (ALCAM) and contributes to maintenance of T cell stimulatory activity

Authors 

Seung-Chul ChoiK D KimJong-Tae KimJae Wha KimHee Gu LeeJ M KimY S JangD Y YoonK I KimY YangD H ChoJ S Lim

Publisher 

Society for Leukocyte Biology

Issue Date 

2008

Citation 

Journal of Leukocyte Biology, vol. 83, no. 1, pp. 89-98

Keywords 

dendritic cells (DC)siRNAactivated leukocyte cell adhesion moleculeprotein ndrg2bone marrow cellcell activitycell differentiationcell stimulationdendritic celldown regulation

Abstract 

We reported previously that N-myc downstream-regulated gene 2 (NDRG2), a member of a new family of differentiation-related genes, is expressed specifically in dendritic cells (DC) differentiated from monocytes, CD34 + progenitor cells, and the myelomonocytic leukemic cell line. In this study, we demonstrate that NDRG2 protein expression is detected, not only in in vitro-differentiated DC but also in primary DC from lymph nodes, thymus, and skin when anti-NDRG2 antibodies are used. As predicted from previous studies investigating the mRNA expression pattern of several types of cell lines, progenitor cells, and DC, NDRG2 protein was expressed strongly in DC. Its expression was detected at significant levels after differentiation from progenitor cells. RNA interference of NDRG2 demonstrated that activated leukocyte cell adhesion molecule (ALCAM) expression is down-regulated specifically in DC differentiated from NDRG2 small interfering RNA (siRNA)-transfected monocytes. This was consistent with our observation that U937 cells transfected with NDRG2 became resistant to the GM-CSF/IL-4-induced ALCAM reduction. Furthermore, DC, which had differentiated from NDRG2 siRNA-transfected monocytes, showed a reduced ability to induce T cell proliferation. Taken together, our results indicate that NDRG2 is able to preserve ALCAM expression during DC differentiation from monocytes under cytokine culture conditions and that its expression helps DC maintain costimulatory signals necessary for T cell stimulation.

ISSN 

0741-5400

Link 

http://dx.doi.org/10.1189/jlb.0507300

Appears in Collections

1. Journal Articles > Journal Articles

Registered Date

2019-05-02


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