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A combined omics approach to generate the surface atlas of human naive CD4+ T cells during early TCR activation.


ABSTRACT: Data from ProteomeXchange, PXD ID: PXD001432. File: SUK5557A8MA2__008-Spender2_3hP SUK5557A8MA2-40-215297.mzml. Published as part of . From the Abstract: {{i}} ... Periodate oxidation and aniline-catalyzed oxime ligation (PAL) technology was applied with subsequent quantitative LC-MS/MS (PAL-qLC-MS/MS) to generate a dataset describing the surface proteome of primary human naive CD4+ T cells and to monitor dynamic changes during the early phase of activation ... {{/i}}

INSTRUMENT(S): Instrument

ORGANISM(S): Homo_sapiens_viruses, Human

DISEASE(S): Not Available

SUBMITTER: Graessel A, et al.  

PROVIDER: GPM32310020145 | GPMDB |

REPOSITORIES: GPMDB

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A Combined Omics Approach to Generate the Surface Atlas of Human Naive CD4+ T Cells during Early T-Cell Receptor Activation.

Graessel Anke A   Hauck Stefanie M SM   von Toerne Christine C   Kloppmann Edda E   Goldberg Tatyana T   Koppensteiner Herwig H   Schindler Michael M   Knapp Bettina B   Krause Linda L   Dietz Katharina K   Schmidt-Weber Carsten B CB   Suttner Kathrin K  

Molecular & cellular proteomics : MCP 20150519 8


Naive CD4(+) T cells are the common precursors of multiple effector and memory T-cell subsets and possess a high plasticity in terms of differentiation potential. This stem-cell-like character is important for cell therapies aiming at regeneration of specific immunity. Cell surface proteins are crucial for recognition and response to signals mediated by other cells or environmental changes. Knowledge of cell surface proteins of human naive CD4(+) T cells and their changes during the early phase  ...[more]

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