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One or more keywords matched the following properties of Kirken, Robert
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overview The goal of the laboratory is to understand the intracellular signaling pathways responsible for mediating T cell activation so that rational strategies to regulate immune responses can be achieved. To accomplish this objective it is necessary to first understand the mechanisms through which these cells are activated. It is clear that T cell activation requires engagement with antigen, costimulatory molecules, and intercellular signaling peptides called cytokines. One cytokine we are particularly interested in is interleukin 2 (IL2). IL2 belongs to a family of cytokines that utilize a shared receptor subunit referred to as the IL2 receptor common gamma (g) chain, or gc. This receptor is recruited by one of several cytokines, which then activate a select member of the Janus tyrosine Kinase (JAK) family, JAK3. JAK3 plays a key role in the development and function of T cells. However, the intracellular molecules activated by JAK3 are not readily known nor the genes it regulates. Therefore, the laboratory is focused on identifying and characterizing these signaling proteins to better understand this event. We are particularly interested in a family of gene regulating molecules known as signal transducers and activators of transcription (Stats) and several ongoing studies in the laboratory are examining the role that Stat5a and Stat5b perform in regulating T cell activity and disease. Through critical analysis of these signaling pathways it will be possible to utilize pharmaceuticals to manipulate these secondary messengers and subsequently modulate an immune response. Ultimately, these studies will enable us to develop novel immunomodulatory drugs with therapeutic potential against important clinical conditions such as cancer, graft-versus-host disease, allergy, and autoimmune disorders
One or more keywords matched the following items that are connected to Kirken, Robert
Item TypeName
Academic Article Signal transducer and activator of transcription 5b (Stat5b) serine 193 is a novel cytokine-induced phospho-regulatory site that is constitutively activated in primary hematopoietic malignancies.
Academic Article Selective disruption of interleukin 4 autocrine-regulated loop by a tyrosine kinase inhibitor restricts activity of T-helper 2 cells.
Academic Article Mechanisms of cytokine signal transduction: IL-2, IL-4 and prolactin as hematopoietin receptor models.
Academic Article Tyrphostin AG-490 inhibits cytokine-mediated JAK3/STAT5a/b signal transduction and cellular proliferation of antigen-activated human T cells.
Academic Article Allochimeric class I MHC protein-induced tolerance by partial TCR engagement requires activation of both CTL4- and common gamma-chain-dependent cytokine signals.
Academic Article Interleukin-2 family cytokines stimulate phosphorylation of the Pro-Ser-Pro motif of Stat5 transcription factors in human T cells: resistance to suppression of multiple serine kinase pathways.
Academic Article Regulation of lymphoid cell apoptosis by Jaks and Stats.
Academic Article Selectin inhibitor bimosiamose prolongs survival of kidney allografts by reduction in intragraft production of cytokines and chemokines.
Academic Article Phosphorylation and activation of the Jak-3 Janus kinase in response to interleukin-2.
Academic Article Regulation of T cell homeostasis by JAKs and STATs.
Academic Article The PHB1/2 phosphocomplex is required for mitochondrial homeostasis and survival of human T cells.
Academic Article STAT3: an important regulator of multiple cytokine functions.
Concept Cytokines
Academic Article Pharmacodynamic biomarkers in metronomic chemotherapy: multiplex cytokine measurements in gastrointestinal cancer patients.
Academic Article The Many Faces of JAKs and STATs Within the COVID-19 Storm.
Academic Article Phosphorylation of CrkL S114 induced by common gamma chain cytokines and T-cell receptor signal transduction.
Search Criteria
  • Cytokines
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