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Your search keyword '"Lymphocyte Specific Protein Tyrosine Kinase p56(lck) genetics"' showing total 58 results

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58 results on '"Lymphocyte Specific Protein Tyrosine Kinase p56(lck) genetics"'

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1. Tyr 192 Regulates Lymphocyte-Specific Tyrosine Kinase Activity in T Cells.

2. Proximal Lck Promoter-Driven Cre Function Is Limited in Neonatal and Ineffective in Adult γδ T Cell Development.

3. Lck Inhibits Heat Shock Protein 65-Mediated Reverse Cholesterol Transport in T Cells.

4. TCRs genetically linked to CD28 and CD3ε do not mispair with endogenous TCR chains and mediate enhanced T cell persistence and anti-melanoma activity.

5. The late endosomal transporter CD222 directs the spatial distribution and activity of Lck.

6. Guanylate binding protein 1-mediated interaction of T cell antigen receptor signaling with the cytoskeleton.

7. Focal adhesion kinase negatively regulates Lck function downstream of the T cell antigen receptor.

8. MAL protein controls protein sorting at the supramolecular activation cluster of human T lymphocytes.

9. Th2-specific immunity and function of peripheral T cells is regulated by the p56Lck Src homology 3 domain.

10. Lck mediates Th2 differentiation through effects on T-bet and GATA-3.

11. Cutting edge: CD28 and c-Rel-dependent pathways initiate regulatory T cell development.

12. Mycolactone suppresses T cell responsiveness by altering both early signaling and posttranslational events.

13. Induction of HIV transcription by Nef involves Lck activation and protein kinase C theta raft recruitment leading to activation of ERK1/2 but not NF kappa B.

14. Lck-dependent tyrosine phosphorylation of diacylglycerol kinase alpha regulates its membrane association in T cells.

15. T cells express alpha7-nicotinic acetylcholine receptor subunits that require a functional TCR and leukocyte-specific protein tyrosine kinase for nicotine-induced Ca2+ response.

16. Atorvastatin restores Lck expression and lipid raft-associated signaling in T cells from patients with systemic lupus erythematosus.

17. A CD8/Lck transgene is able to drive thymocyte differentiation.

18. A cell-type specific CD1d expression program modulates invariant NKT cell development and function.

19. Human high mobility group box transcription factor 1 affects thymocyte development and transgene variegation.

20. Active Ca2+/calmodulin-dependent protein kinase II gamma B impairs positive selection of T cells by modulating TCR signaling.

21. B-1 cells are deficient in Lck: defective B cell receptor signal transduction in B-1 cells occurs in the absence of elevated Lck expression.

22. Selective expression of the Cre recombinase in late-stage thymocytes using the distal promoter of the Lck gene.

23. Tid1 is required for T cell transition from double-negative 3 to double-positive stages.

24. CD45 signals outside of lipid rafts to promote ERK activation, synaptic raft clustering, and IL-2 production.

25. Enhanced responses of glycosylphosphatidylinositol anchor-deficient T lymphocytes.

26. Restoration of NK T cell development in fyn-mutant mice by a TCR reveals a requirement for Fyn during early NK T cell ontogeny.

27. Enrichment of lck in lipid rafts regulates colocalized fyn activation and the initiation of proximal signals through TCR alpha beta.

28. Superantigen stimulation reveals the contribution of Lck to negative regulation of T cell activation.

29. Rosmarinic acid induces p56lck-dependent apoptosis in Jurkat and peripheral T cells via mitochondrial pathway independent from Fas/Fas ligand interaction.

30. Cutting edge: a chemical genetic system for the analysis of kinases regulating T cell development.

31. T cell glycolipid-enriched membrane domains are constitutively assembled as membrane patches that translocate to immune synapses.

32. Lipid raft distribution of CD4 depends on its palmitoylation and association with Lck, and evidence for CD4-induced lipid raft aggregation as an additional mechanism to enhance CD3 signaling.

33. TCR and IL-7 receptor signals can operate independently or synergize to promote lymphopenia-induced expansion of naive T cells.

34. TCR signals mediated by Src family kinases are essential for the survival of naive T cells.

35. The Src family kinase Fyn mediates signals induced by TCR antagonists.

36. Inhibitor of apoptosis protein from Orgyia pseudotsugata nuclear polyhedrosis virus provides a costimulatory signal required for optimal proliferation of developing thymocytes.

37. The Src-protein tyrosine kinase Lck is required for IL-1-mediated costimulatory signaling in Th2 cells.

38. Superantigen-induced T cell:B cell conjugation is mediated by LFA-1 and requires signaling through Lck, but not ZAP-70.

39. B-Myb overexpression results in activation and increased Fas/Fas ligand-mediated cytotoxicity of T and NK cells.

40. Differential roles of Lck and Itk in T cell response to antigen recognition revealed by calcium imaging and electron microscopy.

41. Targeting Src homology 2 domain-containing tyrosine phosphatase (SHP-1) into lipid rafts inhibits CD3-induced T cell activation.

42. Activated p56lck directs maturation of both CD4 and CD8 single-positive thymocytes.

43. Positive and negative selection of thymocytes depends on Lck interaction with the CD4 and CD8 coreceptors.

44. A molecular framework for two-step T cell signaling: Lck Src homology 3 mutations discriminate distinctly regulated lipid raft reorganization events.

45. Specific deficiency of p56lck expression in T lymphocytes from type 1 diabetic patients.

46. CD8+ T cells rapidly acquire NK1.1 and NK cell-associated molecules upon stimulation in vitro and in vivo.

47. Serine 6 of Lck tyrosine kinase: a critical site for Lck myristoylation, membrane localization, and function in T lymphocytes.

48. Defective thymocyte development and perturbed homeostasis of T cells in STAT-induced STAT inhibitor-1/suppressors of cytokine signaling-1 transgenic mice.

49. Regulation of extrathymic T cell development and turnover by oncostatin M.

50. Differential requirement for p56lck in HIV-tat versus TNF-induced cellular responses: effects on NF-kappa B, activator protein-1, c-Jun N-terminal kinase, and apoptosis.

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