Proteomics

Dataset Information

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Proximal proteins of the type I interferon signaling cascade


ABSTRACT: Deciphering the intricate dynamic events governing type I interferon (IFN) signaling is critical to unravel key regulatory mechanisms in host antiviral defense. Here, we leveraged TurboID-based proximity labeling coupled with affinity purification-mass spectrometry to comprehensively map temporal changes to the proximal human proteomes of all seven canonical type I IFN signaling cascade members following IFN stimulation. This established a network of 108 proteins in close proximity to the core members IFNAR1, IFNAR2, JAK1, TYK2, STAT1, STAT2, and IRF9, and validated several known protein assemblies, while also revealing novel, transient associations between key signaling molecules.

INSTRUMENT(S): Q Exactive HF

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Cell Culture, Fibroblast

SUBMITTER: Samira Schiefer  

LAB HEAD: Ben Hale

PROVIDER: PXD045482 | Pride | 2024-05-28

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
2020-08-19-decoys-reviewed-contam-UP000005640.fas Other
20200810_ss_13565_I1_1_00.raw Raw
20200810_ss_13565_I1_1_20.raw Raw
20200810_ss_13565_I1_1_60.raw Raw
20200810_ss_13565_I2_1_00.raw Raw
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Publications

Proximal protein landscapes of the type I interferon signaling cascade reveal negative regulation by PJA2.

Schiefer Samira S   Hale Benjamin G BG  

Nature communications 20240527 1


Deciphering the intricate dynamic events governing type I interferon (IFN) signaling is critical to unravel key regulatory mechanisms in host antiviral defense. Here, we leverage TurboID-based proximity labeling coupled with affinity purification-mass spectrometry to comprehensively map the proximal human proteomes of all seven canonical type I IFN signaling cascade members under basal and IFN-stimulated conditions. This uncovers a network of 103 high-confidence proteins in close proximity to th  ...[more]

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