Literature DB >> 7524737

Expression of CD4 by human hematopoietic progenitors.

F Louache1, N Debili, A Marandin, L Coulombel, W Vainchenker.   

Abstract

It has been recently reported that murine hematopoietic stem cells and progenitors express low levels of CD4. In this study, we have investigated by phenotypic and functional analysis whether the CD4 molecule was also present on human hematopoietic progenitors. Unfractionated marrow cells or immunomagnetic bead-purified CD34+ cells were analyzed by two-color fluorescence with an anti-CD4 and an anti-CD34 monoclonal antibody (MoAb). A large fraction (25% to 50%) of the CD34+ cells was weakly stained by anti-CD4 antibodies. Moreover, in further experiments analyzing the expression of CD4 in different subpopulations of CD34+ cells, we found that CD4 was predominantly expressed in phenotypically primitive cells (CD34+ CD38-/low CD71low Thy-1high, HLA-DR+/low). However, the presence of CD4 was not restricted to these primitive CD34+ cell subsets and was also detected in a smaller fraction of more mature CD34+ cells exhibiting differentiation markers. Among those, subsets with myelo-monocytic markers (CD13, CD33, CD14, and CD11b) have a higher CD4 expression than the erythroid or megakaryocytic subsets. In vitro functional analysis of the sorted CD34+ subsets in colony assays and long-term culture-initiating cell (LTC-IC) assays confirmed that clonogenic progenitors (colony-forming unit-granulocyte-macrophage, burst-forming unit-erythroid, and colony-forming unit-megakaryocyte) and LTC-IC were present in the CD4low population. However, most clonogenic progenitors were recovered in the CD4- subset, whereas the CD4low fraction was greatly enriched in LTC-IC. In addition, CD4low LTC-IC generated larger numbers of primitive clonogenic progenitors than did CD4- LTC-IC. These observations suggest that, in the progenitor compartment, the CD4 molecule is predominantly expressed on very early cells. The CD4 molecule present on CD34+ cells appeared identical to the T-cell molecule because it was recognized by three MoAbs recognizing different epitopes of the molecule. Furthermore, this CD4 molecule is also functional because the CD34+ CD4low cells are able to bind the human immunodeficiency virus (HIV) gp120. This observation might be relevant to the understanding of the mechanisms of HIV-induced cytopenias.

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Year:  1994        PMID: 7524737

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  20 in total

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Journal:  J Clin Invest       Date:  2007-02       Impact factor: 14.808

Review 2.  Effects of human immunodeficiency virus on the erythrocyte and megakaryocyte lineages.

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Journal:  World J Virol       Date:  2013-05-12

Review 3.  Molecular characterization of CD34+ human hematopoietic progenitor cells.

Authors:  W Knapp; H Strobl; C Scheinecker; C Bello-Fernandez; O Majdic
Journal:  Ann Hematol       Date:  1995-06       Impact factor: 3.673

4.  Second-messenger regulation of receptor association with clathrin-coated pits: a novel and selective mechanism in the control of CD4 endocytosis.

Authors:  M Foti; J L Carpentier; C Aiken; D Trono; D P Lew; K H Krause
Journal:  Mol Biol Cell       Date:  1997-07       Impact factor: 4.138

5.  Hematopoietic stem cells and HIV infection.

Authors:  Matthew Pace; Una O'Doherty
Journal:  J Infect Dis       Date:  2013-04-03       Impact factor: 5.226

6.  Early and persistent bone marrow hematopoiesis defect in simian/human immunodeficiency virus-infected macaques despite efficient reduction of viremia by highly active antiretroviral therapy during primary infection.

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Journal:  J Virol       Date:  2001-12       Impact factor: 5.103

7.  LW/SO cell line: a tool for studying the phenotypical characterization and commitment of hematopoietic stem cells.

Authors:  S Oez; U Trautmann; M Smetak; J Birkmann; S al salemeh; E Gebhart; W M Gallmeier
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8.  The CXCR4-tropic human immunodeficiency virus envelope promotes more-efficient gene delivery to resting CD4+ T cells than the vesicular stomatitis virus glycoprotein G envelope.

Authors:  Luis M Agosto; Jianqing J Yu; Megan K Liszewski; Clifford Baytop; Nikolay Korokhov; Laurent M Humeau; Una O'Doherty
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9.  Intrinsic human immunodeficiency virus type 1 resistance of hematopoietic stem cells despite coreceptor expression.

Authors:  H Shen; T Cheng; F I Preffer; D Dombkowski; M H Tomasson; D E Golan; O Yang; W Hofmann; J G Sodroski; A D Luster; D T Scadden
Journal:  J Virol       Date:  1999-01       Impact factor: 5.103

10.  Optimization of protein solubilization for the analysis of the CD14 human monocyte membrane proteome using LC-MS/MS.

Authors:  Xiaoying Ye; Donald J Johann; Ramin M Hakami; Zhen Xiao; Zhaojing Meng; Robert G Ulrich; Haleem J Issaq; Timothy D Veenstra; Josip Blonder
Journal:  J Proteomics       Date:  2009-08-24       Impact factor: 4.044

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