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Biomedical subjects

C E Roark

Publications and source records attributed to C E Roark.

10 recordsLinked to original sources

Response of a gamma delta+ T cell receptor invariant subset during bacterial infection.

Murine gamma delta T cells can be divided into subsets based on the TCR gamma-chains they express. Most of these subsets have variable TCR junctions, but two, both associated with epithelia, express invariant TCRs. The absence of receptor variability in these cells implies uniformity of their ligands. This was previously taken as evidence to suggest that gamma delta T cells recognize host-derived, stress-induced ligands. We now demonstrate, for the first time, the response of a gamma delta TCR invariant subset during bacterial infection, a potential cause of stress. After infection with Listeria monocytogenes, absolute numbers of all T cells in the liver, including alpha beta and gamma delta T cell subsets, increased markedly. However, responses of a gamma delta T cell subset varied. We noted a decrease in the relative frequency of V delta 6.3+ cells, which are, for the most part, included in the V gamma 1+ subset. In contrast, cells bearing the invariant V gamma 6/V delta 1 TCR increased substantially in proportion to other gamma delta T cells, as determined by PCR analysis of liver T cell RNA and by comparing liver gamma delta T cell hybridomas made from normal mice to those from mice infected with Listeria. V gamma 6/V delta 1+ cells have been previously reported as a TCR invariant intraepithelial subset in the female reproductive tract and tongue. We show here that V gamma 6/V delta 1+ cells reactive in Listeria-infected liver are polyclonally derived, but still bear TCR chains with invariant junctional sequences, identical with those of the female reproductive tract. Although the Ag that stimulates these cells is unknown, our results indicate that only diverse, but also invariant, gamma delta T cell subsets can become involved in the host response to a bacterial infection.

Animals↗

Immune protection and control of inflammatory tissue necrosis by gamma delta T cells.

Host defenses against experimental listeriosis in mice involve neutrophils, macrophages, NK cells, and alpha beta T cells. Recently gamma delta T cells have also been implicated in antilisterial resistance. However, their specific role has remained unclear. Here we show that efficient resistance to infection by this bacterium depends on the functions of both alpha beta and gamma delta T cells in both primary and secondary responses. We also present evidence that these functions are complementary. In the livers of alpha beta T cell-depleted mice, bacteria grow to large numbers within hepatocytes but are infrequently found extracellularly. Granulomatous lesions are more frequent and somewhat larger than in normal controls, but remain focal. Neutrophils are absent from liver lesions in these mice. In contrast, the livers of gamma delta T cell-depleted mice contain many extracellular bacteria, but do not show hepatocytes containing large numbers of Listeria. Liver lesions in gamma delta T cell-depleted mice are far more extensive than in normal controls or in alpha beta T cell-depleted mice, and contain large numbers of neutrophils. Particularly in secondary listeriosis, gamma delta T cell-depleted mice show vast coalescent areas of necrotic liver parenchyma within 48 h after infection. Because the bacterial numbers in gamma delta T cell-depleted mice remain lower than in alpha beta T cell-depleted mice, increased mortality in the former may be in part caused by liver failure. We conclude that gamma delta T cells are required to control inflammatory reactivity and to prevent excessive liver damage during the immune response to Listeria monocytogenes.

Animals↗

Liver gamma delta T cells. TCR junctions reveal differences in heat shock protein-60-reactive cells in liver and spleen.

The liver of mice contains elevated percentages of gamma delta T cells when compared with peripheral lymphoid organs. We have now analyzed these cells clonally, by generating a random collection of liver gamma delta T cell hybridomas and sequencing the productively rearranged TCR-gamma and -delta genes in each hybridoma clone. Examining C57BL/10 mice of various ages, we have found that over half of their normal gamma delta T cells are one of two types, V delta 4+ or V delta 6.3+. gamma delta T cell hybridomas generated from mouse liver contain clones that are "spontaneously" reactive, and respond to purified protein derivative from mycobacteria and to a 17-amino acid peptide from mycobacterial heat shock protein-60 (HSP-60). Like similar cells found in newborn thymus or adult spleen, all of the cells showing this HSP-60 reactivity pattern were found to express V gamma 1-J gamma 4-C gamma 4, most in conjunction with V delta 6-J delta 1-C delta, particularly with V delta 6.3. However, the gamma and delta junctional sequences of the V gamma 1/V delta 6+ cells isolated from adult liver differed from those found in adult spleen; being less diverse, their receptors instead resemble those of similar cells from newborn thymus. These data suggest that HSP-60-reactive gamma delta cells in adult murine liver and spleen are independent of each other and may be resident in their respective sites.

Amino Acid Sequence↗