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1.
Front Neurol ; 3: 155, 2012.
Article in English | MEDLINE | ID: mdl-23118733

ABSTRACT

An immediate consequence of traumatic brain injury (TBI) is the induction of an inflammatory response. Mounting data suggest that inflammation is a major contributor to TBI-induced brain damage. However, much remains unknown regarding the induction and regulation of the inflammatory response to TBI. In this study we compared the TBI-induced inflammatory response to severe parenchymal injury (controlled cortical impact) vs. mild brain injury (craniotomy) over a 21-day period. Our data show that both severe and mild brain injury induce a qualitatively similar inflammatory response, involving highly overlapping sets of effector molecules. However, kinetic analysis revealed that the inflammatory response to mild brain injury is of much shorter duration than the response to severe TBI. Specifically, the inflammatory response to severe brain injury persists for at least 21 days, whereas the response to mild brain injury returns to near baseline values within 10 days post-injury. Our data therefore imply that the development of accurate diagnostic tests of TBI severity that are based on imaging or biomarker analysis of the inflammatory response may require repeated measures over at least a 10-day period, post-injury.

2.
Mol Biol Cell ; 22(18): 3491-7, 2011 Sep.
Article in English | MEDLINE | ID: mdl-21795397

ABSTRACT

Protein kinase Cθ (PKCθ) is a serine/threonine kinase that plays an essential role in antigen-regulated responses of T lymphocytes. Upon antigen stimulation, PKCθ is rapidly recruited to the immunological synapse (IS), the region of contact between the T cell and antigen-presenting cell. This behavior is unique among T cell PKC isoforms. To define domains of PKCθ required for retention at the IS, we generated deletion and point mutants of PKCθ. We used quantitative imaging analysis to assess IS retention of PKCθ mutants in antigen-stimulated T cell clones. Deletion of the kinase domain or site-directed mutation of a subset of known PKCθ phosphorylation sites abrogated or significantly reduced IS retention, respectively. IS retention did not correlate with phosphorylation of specific PKCθ residues but rather with kinase function. Thus PKCθ catalytic competence is essential for stable IS retention.


Subject(s)
Immunological Synapses/metabolism , Isoenzymes/metabolism , Protein Kinase C/metabolism , Protein Transport , Amino Acid Substitution , Animals , Catalytic Domain , Cells, Cultured , Green Fluorescent Proteins/metabolism , Isoenzymes/chemistry , Isoenzymes/genetics , Mice , Mutagenesis, Site-Directed , Phosphorylation , Protein Kinase C/chemistry , Protein Kinase C/genetics , Protein Kinase C-theta , Recombinant Fusion Proteins/metabolism , Single-Cell Analysis
3.
J Immunol ; 185(8): 4520-4, 2010 Oct 15.
Article in English | MEDLINE | ID: mdl-20855880

ABSTRACT

TCR-mediated activation of the transcription factor NF-κB is required for T cell proliferation, survival, and effector differentiation. Although this pathway is the subject of intense study, it is not known whether TCR signaling to NF-κB is digital (switch-like) or analog in nature. Through analysis of the phosphorylation and degradation of IκBα and the nuclear translocation and phosphorylation of the NF-κB subunit RelA, we show that TCR-directed NF-κB activation is digital. Furthermore, digitization occurs well upstream of the IκB kinase complex, as protein kinase C translocation to the immunologic synapse and activation-associated aggregation of Bcl10 and Malt1 also demonstrate both digital behavior and high correlation with RelA nuclear translocation. Thus, similar to the TCR-to-MAPK signaling cascade, analog Ag inputs are converted to digital activation outputs to NF-κB at an early step downstream of TCR ligation.


Subject(s)
Lymphocyte Activation/immunology , NF-kappa B/metabolism , Receptors, Antigen, T-Cell/metabolism , Signal Transduction/immunology , Animals , Cell Separation , Enzyme Activation , Flow Cytometry , Humans , I-kappa B Proteins/immunology , I-kappa B Proteins/metabolism , Jurkat Cells , Mice , Mice, Inbred C57BL , NF-KappaB Inhibitor alpha , NF-kappa B/immunology , Phosphorylation , Protein Transport/immunology , Receptors, Antigen, T-Cell/immunology
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