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GoPubMed Proteins lists recent and important papers and reviews for proteins. Page last changed on 19 Aug 2016.

Tyrosine 3-monooxygenase/tryptophan 5-monooxygenase activation protein, theta polypeptide

14-3-3tau, 14-3-3 theta, 14-3-3 theta protein
Papers on 14-3-3tau
Inflammation-Induced CCR7 Oligomers Form Scaffolds to Integrate Distinct Signaling Pathways for Efficient Cell Migration.
Legler et al., Kreuzlingen, Switzerland. In Immunity, Feb 2016
Here, we showed that different inflammatory stimuli provoked oligomerization of the chemokine receptor CCR7, enabling human dendritic cells and T cell subpopulations to process guidance cues not only through classical G protein-dependent signaling but also by integrating an oligomer-dependent Src kinase signaling pathway.
Targeting Viral Proteostasis Limits Influenza Virus, HIV, and Dengue Virus Infection.
Marazzi et al., New York City, United States. In Immunity, Feb 2016
Inhibition of host factors co-opted during active infection is a strategy hosts use to suppress viral replication and a potential pan-antiviral therapy.
Myelopoiesis Reloaded: Single-Cell Transcriptomics Leads the Way.
Beyer et al., Bonn, Germany. In Immunity, Feb 2016
In a recent issue of Cell, Paul et al.
HIV and Tfh Cells: Circulating New Ideas to Identify and Protect.
Silvestri et al., Atlanta, United States. In Immunity, Feb 2016
(2016) report that circulating IL-21-producing CD4(+) T cells are phenotypically, transcriptionally, and functionally similar to lymphoid Tfh cells and that such HIV-specific Tfh cells were increased in RV144 trial vaccine recipients.
Clonal Abundance of Tumor-Specific CD4(+) T Cells Potentiates Efficacy and Alters Susceptibility to Exhaustion.
Wolchok et al., New York City, United States. In Immunity, Feb 2016
Using a system in which precursor frequency can be manipulated in a murine melanoma model, we demonstrated that the clonal abundance of CD4(+) T cells specific for self-tumor antigen positively correlated with antitumor efficacy.
Identification and functional characterization of 14-3-3 in TLR2 signaling.
Ahmad-Nejad et al., Mannheim, Germany. In J Proteome Res, 2011
14-3-3 theta is a new and important regulatory protein in the TLR-2 and TLR-4 signaling suppressing the MyD88-dependent pathway
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