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Titlebook: V(D)J Recombination; Pierre Ferrier Book 2009 The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Science

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V(D)J Recombination Deficiencies,strand breaks (dsb), whether they occur during V(D)J recombination or secondary to other DNA injuries. Two NHEJ factors, . and ., were indeed discovered through the study of human V(D)J recombination defective human SCID patients.
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Regulation of V(D)J Recombination by E-Protein Transcription Factors,cells undergo recombination. E-proteins appear to be master regulators that coordinate antigen receptor gene rearrangement and expression. This chapter focuses on how E-proteins regulate V(D)J recombination by activating transcription, initiating rearrangement and driving differentiation during B- and T-cell development.
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Temporal and Spatial Regulation of V(D)J Recombination: Interactions of Extrinsic Factors with the lex consisting of RAG-1 and RAG-2 subunits—and macromolecular assemblies extrinsic to the recombinase. This chapter will focus on those features of the recombinase itself—and in particular the RAG-2 subunit— that interact with extrinsic factors to establish patterns of temporal control and locus specificity in developing lymphocytes.
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Daniel J. Bolland,Andrew L. Wood,Anne E. Corcoranamework used for the analysis of the companies. This section is followed by a discussion of the main results and the new communication and projection theory. The paper ends with a short discussion of implications for management.
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Regulation of RAG Transposition,es on the mechanism and regulation of RAG transposition. We first provide a brief overview of the biochemistry of V(D)J recombination. We then discuss the discovery of RAG transposition and present an overview of the RAG transposition pathway. Using this pathway as a framework, we discuss the factors and forces that regulate RAG transposition.
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Molecular Pathways and Mechanisms Regulating the Recombination of Immunoglobulin Genes during B-Lymcale chromatin dynamics and localized changes in chromatin structure in regulating the accessibility of Ig loci at specific stages of B-cell development. We review this emergent framework and discuss new experimental approaches that will be needed to explore the underlying molecular mechanisms.
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