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1  which is required for rejoining DSBs during VDJ recombination.
2 ements is essential for locus activation and VDJ recombination.
3 action with factors implicated in regulating VDJ recombination.
4 ighest potential CDR3 diversity generated by VDJ recombination.
5 strand breaks including those induced during VDJ recombination.
6 ensitive, but having only a modest defect in VDJ recombination.
7  H3 acetylation status was tightly linked to VDJ recombination.
8 pling enhancer activity to accessibility for VDJ recombination.
9  for example by ionizing radiation or during VDJ recombination.
10 or near a JH segment, suggesting an error in VDJ recombination.
11 actions with the 3'CBE, but does not restore VDJ recombination.
12 etic, there is also nongenetic modulation of VDJ recombination.
13                        RAG1 and RAG2 mediate VDJ recombination, a process necessary for the maturatio
14 ter immunization and assessed peripheral IgH VDJ recombination activities in C57BL/6 (B6) mice congen
15 data provide a window into the mechanisms of VDJ recombination and diversity creation and allow us to
16                          Mutations impairing VDJ recombination and DNA repair were the most common un
17                      This mechanism promotes VDJ recombination and effective selection of cells expre
18 ficant correlation between biases induced by VDJ recombination and our inferred selection factors tog
19 B ligation, resulting in failure to complete VDJ recombination and subsequent block of B-lymphocyte m
20                 Recent advances in modelling VDJ recombination and subsequent selection of T- and B-c
21 e to state in a hidden Markov model (HMM) of VDJ recombination, and assumed that mutations occur via
22 ort frequency estimation, learn the rules of VDJ recombination, and generalize well to unseen sequenc
23 chastic steps: random receptor generation by VDJ recombination, and selection based on the recognitio
24 ed DNA damage in pro-B cells, independent of VDJ recombination, and these cells had evidence of slowe
25 a process called variable-diversity-joining (VDJ) recombination] and, upon successful rearrangement,
26 ntroduced by somatic mutation or heavy chain VDJ recombination are necessary and sufficient for Dsg3
27 n of the TCR alpha joining gene segments for VDJ recombination at an early stage of T cell developmen
28 hat c-Myb plays a crucial role in activating VDJ recombination at the endogenous TCR-delta locus.
29 hancer, the inserted Vbeta segment underwent VDJ recombination at the same frequency as the natural c
30                  Developmental activation of VDJ recombination at the T cell receptor (TCR) delta loc
31  elements in the developmental regulation of VDJ recombination at the TCR alpha/delta locus was exami
32  DN stage as observed in RAG-/- mice, DJ and VDJ recombination at the TCR beta locus was functional,
33 ), a specialized DNA polymerase intrinsic to VDJ recombination, broadly expressed within CD34(+) prog
34  role in the ability of E(delta) to activate VDJ recombination by analyzing VDJ recombination in mice
35 ary, is not sufficient for the activation of VDJ recombination by E(delta).
36 ferences in CDR H3 junctional regions during VDJ recombination can alter reactivity and evolutionary
37 onstrate that population-wide individualized VDJ recombination can result in orders of magnitude of d
38  lineage commitment and T cell receptor beta VDJ recombination, Cd3 expression and beta-selection hav
39  been implicated in IgH locus transcription, VDJ recombination, class switch recombination, and somat
40 orting that E2A, PAX5, and the RAGs are in a VDJ recombination complex bound to key sequences on the
41 We show that pre-BCR activation releases the VDJ recombination complex through calmodulin binding to
42 includes overexpression of genes involved in VDJ recombination, CXCR4 pathway signaling, and BCL2 fam
43 expression vector significantly restores the VDJ recombination deficits in DNA-PKcs-deficient cells,
44                                       Random VDJ recombination early in T and B cell development enab
45   Although increased numbers of illegitimate VDJ recombination events do not directly portend leukemi
46 mline DH segment was expressed in functional VDJ recombination events involving different JH segments
47 n initial random DNA editing process, called VDJ recombination, followed by functional selection of c
48                                              VDJ recombination follows probabilistic rules that can b
49 es showed greatly enhanced expression of the VDJ recombination genes DNTT, RAG1, and RAG2, but not AI
50 ) to activate VDJ recombination by analyzing VDJ recombination in mice carrying a minilocus in which
51  and differences exist between brain SGR and VDJ recombination in the immune system, the first identi
52  signaling in B-cell development, we studied VDJ recombination in the pro-B cells of FLT3/ITD mice an
53 of TCR-delta gene rearrangement, we compared VDJ recombination in transgenic mice carrying two versio
54 agment of E(delta) is sufficient to activate VDJ recombination in vivo.
55 r (E(delta)) efficiently activates minilocus VDJ recombination in vivo.
56 ase with zebrafish maturity, suggesting that VDJ recombination involves a level of deterministic prog
57     Ordered assembly of Ag receptor genes by VDJ recombination is a key determinant of successful lym
58                                              VDJ recombination is developmentally regulated in vivo b
59                      This process, known as "VDJ recombination", is implemented via a series of stoch
60  that enables inter-individual comparison of VDJ recombination models.
61                                              VDJ recombination of T cell receptor and immunoglobulin
62                   In addition to its role in VDJ recombination, our study points out that the full-le
63 velopment of T and B cells by initiating the VDJ recombination process that leads to generation of a
64 fferent ages, we quantify the changes in the VDJ recombination process that occur from embryo to youn
65 cal impact of selection on the output of the VDJ recombination process.
66 nts can induce specific abnormalities of the VDJ recombination process.
67  DNA interstrand cross-links, involvement in VDJ recombination, repair of DNA double-strand breaks, a
68  was measured along versions of a transgenic VDJ recombination reporter and the endogenous T cell rec
69           So far, it remains unknown whether VDJ recombination rules differ between individuals.
70 ructural constraints form the basis to shape VDJ recombination sequences into MHC-restricted repertoi
71 lopmental and maturational changes involving VDJ recombination, somatic hypermutation and class switc
72 enic mice containing variants of a minilocus VDJ recombination substrate.
73 ginates in a stochastic DNA editing process (VDJ recombination) that acts on the surface receptor gen
74 discriminate against MHC binding, suggesting VDJ recombination together with Valpha/Vbeta pairing det
75 ned to function in cells that have undergone VDJ recombination using any combination of variable (V),
76                      The first occurs during VDJ recombination, when inverted DH genes are usually av
77 the core-enhancer Emu element mainly affects VDJ recombination with minor effects on class switch rec
78                   Despite a severe defect in VDJ recombination with partial blockade at the pro-B cel