The Journal of Infectious Diseases · 2011 · 58 citations · 42 references
Microbial PathogensAdaptive Immune SystemImmunologyImmune RegulationCd4 T Cell ResponsesImmune SystemCd4+ T-cell ResponseInflammationMedical MicrobiologyCholesterol α-Glucoside ContentVirulence FactorImmune FunctionHost-microbe InteractionClinical MicrobiologyHelicobacter PyloriCytokineBacterial Cholesterol ContentBacterial CholesterolPathogenesisMicrobiologyCellular Immune ResponseMedicine
Helicobacter pylori blocks the proliferation of human CD4(+) T cells, facilitated by vacuolating exotoxin (VacA) and γ-glutamyl transpeptidase (GGT). H. pylori-triggered T-cell reactions in mice correlate with bacterial cholesterol and cholesterol α-glucoside content but their role in human cells is unclear. We characterized the effect of VacA, GGT, and cholesterol on T-helper 1, T-helper 2, T-regulatory and T-helper 17 associated cytokines and T-cell proliferation. VacA, GGT, and bacterial cholesterol content exhibited differential and synergistic inhibitory effects on the expression of activation markers CD25 and CD69 and on interleukin 2, interleukin 4, interleukin 10, and interferon γ production. These factors did not affect the H. pylori-mediated abrogation of transforming growth factor β secretion or increased interleukin 6 production. Cholesterol α-glucosyltransferase-deficient bacteria exerted strongly reduced antiproliferative effects on primary human CD4(+) T cells. In conclusion, H. pylori shapes rather than suppresses human CD4(+) T-cell responses, and glucosylated cholesterol is a relevant bacterial component involved in this modulation.
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Plasticity of CD4+ T Cell Lineage Differentiation
Liang Zhou, Mark M. W. Chong, Dan R. Littman · Immunity · 2009 · 1.5K citations · Full text
<i>Helicobacter pylori</i> Vacuolating Cytotoxin Inhibits T Lymphocyte Activation
Bettina Gebert, Wolfgang Fischer, Evelyn Weiss et al. · Science · 2003 · 560 citations