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Science 22 September 1995: Vol. 269. no. 5231, pp. 1727 - 1730 DOI: 10.1126/science.7569902
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Articles
Science, Vol 269, Issue 5231, 1727-1730
Copyright © 1995 by American Association for the Advancement of Science
Activation of dual T cell signaling pathways by the chemokine RANTES
KB Bacon,
BA Premack,
P Gardner,
and
TJ Schall
Department of Immunology, DNAX Research Institute of Molecular and Cellular Biology, Palo Alto, CA 94304, USA.
The chemokine RANTES induced biphasic mobilization of Ca2+ in T cells. The initial peak, a transient increase in cytosolic Ca2+ mediated by a heterotrimeric guanine nucleotide-binding protein (G protein)--coupled pathway, was associated predominantly with chemotaxis. The second peak, Ca2+ release and sustained influx dependent on protein tyrosine kinases, was associated with a spectrum of cellular responses--Ca2+ channel opening, interleukin-2 receptor expression, cytokine release, and T cell proliferation--characteristic of T cell receptor activation. Other chemokines did not produce these responses. Thus, in addition to inducing chemotaxis, RANTES can act as an antigen-independent activator of T cells in vitro.
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Multiple Sclerosis
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- C-C chemokine profile of cord blood mononuclear cells: selective defect in RANTES production.
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Blood
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- Myeloid DAP12-associating lectin (MDL)-1 is a cell surface receptor involved in the activation of myeloid cells.
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PNAS
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- The CC-Chemokine RANTES Increases the Attachment of Human Immunodeficiency Virus Type 1 to Target Cells via Glycosaminoglycans and Also Activates a Signal Transduction Pathway That Enhances Viral Infectivity.
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Blood
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PNAS
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- Eotaxin Activates T Cells to Chemotaxis and Adhesion Only if Induced to Express CCR3 by IL-2 Together with IL-4.
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Stem Cells
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