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46 results on '"Lck"'

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1. CD28 shapes T cell receptor signaling by regulating Lck dynamics and ZAP70 activation.

2. Bayesian metamodeling of early T-cell antigen receptor signaling accounts for its nanoscale activation patterns.

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3. CD28 shapes T cell receptor signaling by regulating Lck dynamics and ZAP70 activation

4. A non-invasive nanobody probe for high precision mapping of Lck spatial distribution.

5. Pneumococcal hydrogen peroxide regulates host cell kinase activity.

6. Bayesian metamodeling of early T-cell antigen receptor signaling accounts for its nanoscale activation patterns

7. Phospho-mimetic CD3ε variants prevent TCR and CAR signaling.

8. A non-invasive nanobody probe for high precision mapping of Lck spatial distribution

9. Pneumococcal hydrogen peroxide regulates host cell kinase activity

10. Phospho-mimetic CD3ε variants prevent TCR and CAR signaling

11. Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity.

12. Integrated signaling and transcriptome analysis reveals Src family kinase individualities and novel pathways controlled by their constitutive activity

13. MHC-independent αβT cells: Lessons learned about thymic selection and MHC-restriction.

14. MHC-independent αβT cells: Lessons learned about thymic selection and MHC-restriction

15. Altered Cellular Immunity and Differentially Expressed Immune-Related Genes in Patients With Systemic Sclerosis–Associated Pulmonary Arterial Hypertension.

16. Role of Programmed Cell Death Protein-1 and Lymphocyte Specific Protein Tyrosine Kinase in the Aryl Hydrocarbon Receptor- Mediated Impairment of the IgM Response in Human CD5+ Innate-Like B Cells.

17. Altered Cellular Immunity and Differentially Expressed Immune-Related Genes in Patients With Systemic Sclerosis–Associated Pulmonary Arterial Hypertension

18. Role of Programmed Cell Death Protein-1 and Lymphocyte Specific Protein Tyrosine Kinase in the Aryl Hydrocarbon Receptor- Mediated Impairment of the IgM Response in Human CD5+ Innate-Like B Cells

19. Non-Stimulatory pMHC Enhance CD8 T Cell Effector Functions by Recruiting Coreceptor-Bound Lck

20. Non-Stimulatory pMHC Enhance CD8 T Cell Effector Functions by Recruiting Coreceptor-Bound Lck.

21. Adapting T Cell Receptor Ligand Discrimination Capability via LAT

22. Adapting T Cell Receptor Ligand Discrimination Capability via LAT.

23. CD4 Inhibits Helper T Cell Activation at Lower Affinity Threshold for Full-Length T Cell Receptors Than Single Chain Signaling Constructs

24. Genetic Loss of LCK Kinase Leads to Acceleration of Chronic Lymphocytic Leukemia

25. CD4 Inhibits Helper T Cell Activation at Lower Affinity Threshold for Full-Length T Cell Receptors Than Single Chain Signaling Constructs.

26. Genetic Loss of LCK Kinase Leads to Acceleration of Chronic Lymphocytic Leukemia.

27. Dual Role of CD4 in Peripheral T Lymphocytes

28. Dual Role of CD4 in Peripheral T Lymphocytes.

29. A Stretch of Negatively Charged Amino Acids of Linker for Activation of T-Cell Adaptor Has a Dual Role in T-Cell Antigen Receptor Intracellular Signaling

30. A Stretch of Negatively Charged Amino Acids of Linker for Activation of T-Cell Adaptor Has a Dual Role in T-Cell Antigen Receptor Intracellular Signaling.

31. TCR triggering induces the formation of Lck-RACK1-actinin-1 multiprotein network affecting Lck redistribution

32. Distinct mechanisms regulate Lck spatial organization in activated T cells

33. TCR Triggering Induces the Formation of Lck-RACK1-Actinin-1 Multiprotein network affecting Lck redistribution.

34. Distinct Mechanisms regulate lck spatial Organization in activated T cells.

35. The glycerophosphoinositols: from lipid metabolites to modulators of T-cell signaling

36. CD4 Inhibits Helper T Cell Activation at Lower Affinity Threshold for Full-Length T Cell Receptors Than Single Chain Signaling Constructs

37. PKC-theta-mediated signal delivery from the TCR/CD28 surface receptors

38. Lck, membrane microdomains and TCR triggering machinery: defining the new rules of engagement

39. On the control of TCR phosphorylation

40. Initiation of TCR phosphorylation and signal transduction

41. The glycerophosphoinositols: from lipid metabolites to modulators ofT-cell signaling.

42. PKC-theta-mediated signal delivery from the TCR/CD28 surface receptors.

43. Lck, membrane microdomains, and TCR triggering machinery: defining the new rules of engagement.

44. TCR Triggering Induces the Formation of Lck–RACK1–Actinin-1 Multiprotein Network Affecting Lck Redistribution

45. Lck, membrane microdomains and TCR triggering machinery: defining the new rules of engagement

46. On the Control of TCR Phosphorylation