Title of article
Characterization of a Novel Hematopoietic Marker Expressed from Early Embryonic Hematopoietic Stem Cells to Adult Mature Lineages,
Author/Authors
Stephane Prost، نويسنده , , Magali LeDiscorde، نويسنده , , Rima Haddad، نويسنده , , Jean Claude Gluckman، نويسنده , , Bruno Canque، نويسنده , , Marek Kirszenbaum، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2002
Pages
13
From page
236
To page
248
Abstract
A novel membrane protein has been identified in the course of screening for differentially expressed cDNAs in human embryonic hematopoietic sites. This 37- to 38-kDa molecule, designated KLIP-1 (killer lineage protein), consisting of 350 amino acids and containing five transmembrane domains, is encoded by the 5093-bp KLIP-1 gene, composed of nine exons and located on chromosome 6 (6p21.1–6p21.2). We found the KLIP-1 protein to be expressed by nucleated hematopoietic cells, from early embryonic hematopoietic stem cells through mature adult blood lymphoid lineages, either as membrane or as cytoplasmic molecules. In day-30/32 human embryo sections, KLIP-1 protein expression is restricted to circulating hematopoietic cells at hematopoiesis sites. Membrane KLIP-1 is expressed by fetal and adult GP-A+ erythroblasts, the fetal liver CD34+ subset, fetal spleen, and adult bone marrow CD56+ NK and CD19+ B cells. Among mature blood cells, surface KLIP-1 expression is restricted to CD56+ NK cells, indicating KLIP-1 to be a novel marker of this population. Altogether, these results indicate that membrane export of KLIP-1 antigen is developmentally and ontogenetically regulated. The high degree of conservation of the KLIP-1 protein sequence among mammals strongly suggests that it plays an important role during hematopoiesis and may exercise similar functions in human and mouse blood cells. The KLIP-1 molecule may therefore constitute a powerful tool for improving knowledge of both human hematopoiesis and NK cell ontogeny and immune functions.
Journal title
Blood Cells, Molecules and Diseases
Serial Year
2002
Journal title
Blood Cells, Molecules and Diseases
Record number
498557
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