Literature DB >> 20231472

Ordering human CD34+CD10-CD19+ pre/pro-B-cell and CD19- common lymphoid progenitor stages in two pro-B-cell development pathways.

Eva Sanz1, Norman Muñoz-A, Jorge Monserrat, Ana Van-Den-Rym, Pedro Escoll, Ismael Ranz, Melchor Alvarez-Mon, Antonio de-la-Hera.   

Abstract

Studies here respond to two long-standing questions: Are human "pre/pro-B" CD34(+)CD10(-)CD19(+) and "common lymphoid progenitor (CLP)/early-B" CD34(+)CD10(+)CD19(-) alternate precursors to "pro-B" CD34(+)CD19(+)CD10(+) cells, and do the pro-B cells that arise from these progenitors belong to the same or distinct B-cell development pathways? Using flow cytometry, gene expression profiling, and Ig V(H)-D-J(H) sequencing, we monitor the initial 10 generations of development of sorted cord blood CD34(high)Lineage(-) pluripotential progenitors growing in bone marrow S17 stroma cocultures. We show that (i) multipotent progenitors (CD34(+)CD45RA(+)CD10(-)CD19(-)) directly generate an initial wave of Pax5(+)TdT(-) "unilineage" pre/pro-B cells and a later wave of "multilineage" CLP/early-B cells and (ii) the cells generated in these successive stages act as precursors for distinct pro-B cells through two independent layered pathways. Studies by others have tracked the origin of B-lineage leukemias in elderly mice to the mouse B-1a pre/pro-B lineage, which lacks the TdT activity that diversifies the V(H)-D-J(H) Ig heavy chain joints found in the early-B or B-2 lineage. Here, we show a similar divergence in human B-cell development pathways between the Pax5(+)TdT(-) pre/pro-B differentiation pathway that gives rise to infant B-lineage leukemias and the early-B pathway.

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Year:  2010        PMID: 20231472      PMCID: PMC2851857          DOI: 10.1073/pnas.0907942107

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  42 in total

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2.  B lymphopoiesis is active throughout human life, but there are developmental age-related changes.

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Review 5.  Fates of human B-cell precursors.

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6.  B cell origin of non-T cell acute lymphoblastic leukemia. A model for discrete stages of neoplastic and normal pre-B cell differentiation.

Authors:  L M Nadler; S J Korsmeyer; K C Anderson; A W Boyd; B Slaughenhoupt; E Park; J Jensen; F Coral; R J Mayer; S E Sallan
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7.  Adult BM generates CD5+ B1 cells containing abundant N-region additions.

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8.  Human cord blood CD34+Pax-5+ B-cell progenitors: single-cell analyses of their gene expression profiles.

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9.  Human B cell development. II. Subpopulations in the human fetus.

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10.  High-efficiency recovery of functional hematopoietic progenitor and stem cells from human cord blood cryopreserved for 15 years.

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1.  Distinct B-cell lineage commitment distinguishes adult bone marrow hematopoietic stem cells.

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2.  RAG-1 and Ly6D independently reflect progression in the B lymphoid lineage.

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Review 3.  B-1 B cell development in the fetus and adult.

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4.  Single-cell trajectory detection uncovers progression and regulatory coordination in human B cell development.

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5.  Perturbation of fetal liver hematopoietic stem and progenitor cell development by trisomy 21.

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6.  Reduced production of B-1-specified common lymphoid progenitors results in diminished potential of adult marrow to generate B-1 cells.

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7.  Pan-myeloid Differentiation of Human Cord Blood Derived CD34+ Hematopoietic Stem and Progenitor Cells.

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8.  Human B-cell and progenitor stages as determined by probability state modeling of multidimensional cytometry data.

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Review 9.  Early events in lymphopoiesis: an update.

Authors:  Qingzhao Zhang; Ryuji Iida; Takafumi Yokota; Paul W Kincade
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Review 10.  Immune responses in neonates.

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Journal:  Expert Rev Clin Immunol       Date:  2014-08-04       Impact factor: 4.473

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