Establishment of T-cell Lines from Infiltrated NOD Islets by Stimulation of Specific T-Cell Receptor Vβ Segments

1993 ◽  
Vol 6 (4) ◽  
pp. 423-436 ◽  
Author(s):  
Didier Maugendre ◽  
Béatrice Legrand ◽  
Martine Olivi ◽  
Pierre Bedossa ◽  
Jean-François Bach ◽  
...  
2005 ◽  
Vol 128 (5) ◽  
pp. 1268-1277 ◽  
Author(s):  
Ana C. Abadía-Molina ◽  
Atsushi Mizoguchi ◽  
William A. Faubion ◽  
Ype P. de Jong ◽  
Svend T. Rietdijk ◽  
...  

1998 ◽  
Vol 13 (6) ◽  
pp. 355-361 ◽  
Author(s):  
E. Gemmell ◽  
D. A. Grieco ◽  
M. P. Cullinan ◽  
B. Westerman ◽  
G. J. Seymour

1996 ◽  
Vol 9 (2) ◽  
pp. 193-204 ◽  
Author(s):  
Thomas P. Prindiville ◽  
Mary C. Cantrell ◽  
Takayuki Matsumoto ◽  
William R. Brown ◽  
Aftab A. Ansari ◽  
...  

1987 ◽  
Vol 165 (2) ◽  
pp. 279-301 ◽  
Author(s):  
S B Sorger ◽  
S M Hedrick ◽  
P J Fink ◽  
M A Bookman ◽  
L A Matis

17 T cell clones and 3 T cell lines, specific for pigeon cytochrome c, were analyzed for fine specificity and rearranged T cell receptor (TCR) gene elements. Clones of similar fine specificities were grouped into one of four phenotypes, and correlations between phenotype differences and gene usage could be made. All the lines and clones rearranged a member of the V alpha 2B4 gene family to a limited number of J alpha regions. The beta chain was made up of one of three non-cross-hybridizing V beta regions, each rearranging to only one or two J beta s. The use of alternate V beta regions could be correlated with phenotype differences, which were manifested either as MHC- or MHC and antigen-specificity changes. In addition, the presence of alloreactivity, which defined a phenotype difference, could be correlated solely with the use of an alternate J alpha region. These observations were substantiated by prospective analyses of pigeon cytochrome c-specific T cell lines that were selected for alternate MHC specificity or alloreactivity and were found to express the correlated alpha and beta chain rearrangements. Previously, the TCR DNA sequences from two clones, each representing a variant of one phenotype, showed sequence differences only in the N regions of their TCR genes. Since only these two variants, using identical V alpha-J alpha and V beta-J beta gene elements, were repeatedly observed in this study, we would predict that the junctional diversity differences are selectable. In this T cell response, all the gene elements involved in the generation of diversity appear to be selected, and may therefore be important in the determination of TCR specificity. This high degree of receptor gene selection represents a fundamental difference from the diversity seen in several extensively analyzed antibody responses.


1996 ◽  
Vol 184 (5) ◽  
pp. 2031-2036 ◽  
Author(s):  
N Taylor ◽  
K B Bacon ◽  
S Smith ◽  
T Jahn ◽  
T A Kadlecek ◽  
...  

A variant of severe combined immunodeficiency syndrome (SCID) with a selective inability to produce CD8 single positive T cells and a signal transduction defect in peripheral CD4+ cells has recently been shown to be the result of mutations in the ZAP-70 gene. T cell receptor (TCR) signaling requires the association of the ZAP-70 protein tyrosine kinase with the TCR complex. Human T cell leukemia virus type I-transformed CD4+ T cell lines were established from ZAP-70-deficient patients and normal controls. ZAP-70 was expressed and appropriately phosphorylated in normal T cell lines after TCR engagement, but was not detected in T cell lines from ZAP-70-deficient patients. To determine whether signaling could be reconstituted, wild-type ZAP-70 was introduced into deficient cells with a ZAP-70 retroviral vector. High titer producer clones expressing ZAP-70 were generated in the Gibbon ape leukemia virus packaging line PG13. After transduction, ZAP-70 was detected at levels equivalent to those observed in normal cells, and was appropriately phosphorylated on tyrosine after receptor engagement. The kinase activity of ZAP-70 in the reconstituted cells was also appropriately upregulated by receptor aggregation. Moreover, normal and transduced cells, but not ZAP-70-deficient cells, were able to mobilize calcium after receptor ligation, indicating that proximal TCR signaling was reconstituted. These results indicate that this form of SCID may be corrected by gene therapy.


1985 ◽  
Vol 162 (6) ◽  
pp. 2169-2174 ◽  
Author(s):  
M Maeda ◽  
A Shimizu ◽  
K Ikuta ◽  
H Okamoto ◽  
M Kashihara ◽  
...  

Using the clone-specific rearrangement of the T cell receptor gene as the genetic marker of the clonotype, we analyzed the clonal origin of the interleukin 2 (IL-2)-dependent human T-lymphotrophic virus I (HTLV-I)-positive T cell lines established from various adult T cell leukemia (ATL) patients. From a patient with chronic ATL, whose leukemic cells proliferated in vitro in response to IL-2, we repeatedly established leukemic T cell clones having the same rearrangement profile of the T beta chain gene as the leukemic cells. By contrast, established cell lines from acute ATL patients had different beta chain gene rearrangements from those of the leukemic cells. These HTLV-I+ T cell lines might not be the direct progeny of the leukemic cells, but that of T cells infected either in vivo or in vitro. These IL-2-reactive nonleukemic T cells might have been selected in vitro, because their leukemic cells failed to respond to IL-2, despite the expression of IL-2 receptor. The analysis of the T cell receptor gene rearrangement may give a new approach for the elucidation of the mechanism of leukemogenesis and the origin of the HTLV-I+ T cell lines in ATL.


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