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Molecular Biology of B Cell and T Cell Development

by John G. Monroe
Publisher: Springer Science & Business Media
Release Date: 2013-03-14
Genre: Science
Pages: 587 pages
ISBN 13: 147572778X
ISBN 10: 9781475727784
Format: PDF, ePUB, MOBI, Audiobooks, Kindle

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Synopsis : Molecular Biology of B Cell and T Cell Development written by John G. Monroe, published by Springer Science & Business Media which was released on 2013-03-14. Download Molecular Biology of B Cell and T Cell Development Books now! Available in PDF, EPUB, Mobi Format. Despite the tremendous diversity of the cells of the hematopoietic system, they are all derived from common precursor cells that are generated in the fetus and persist into adult life. -- Despite the tremendous diversity of the cells of the hematopoietic system, they are all derived from common precursor cells that are generated in the fetus and persist into adult life. In this regard, Band T lymphocytes, which comprise the two arms of the antigen-specific and inducible immune system, though functionally very different, are descendants of the same stem cell precursor. In the past several years, we have witnessed an explosion of information regarding the process by which differentiation of B-and T-cells from stem cells occurs. This information, like the answers to most important biological questions, has come from multiple and diverse directions. Because all hematopoietic cells arise from common precursors, complex regulatory processes must be involved in determining commitment to various lineages. Understanding commitment to the B- or T-cell lineage remains incomplete; however, identification of transcription factors necessary for progression along specific B-and T-cell pathways suggests that we are on the verge of understanding the molecules involved in the initial fate-determining steps. Studies of this type previously could be accomplished only in nonmammalian systems that are more amenable to genetic approaches. However, new technologies allow increasingly elegant and informative studies in mammalian systems, particularly for cells of the hematopoietic system.

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