Abstract
Dynamic protein-protein interactions are key drivers of many cellular processes. Determining the relative sequence and precise timing of these interactions is crucial for elucidating the functional dynamics of biological processes. Here, we developed Time-Resolved Analysis of Protein-Protein Ensembles using a Destabilizing Domain (TRAPPED) to study protein-protein interactions in a temporal manner. We have taken advantage of a dihydrofolate reductase destabilizing domain (DHFR(DD)) that can be fused to a protein of interest and is constitutively degraded by the proteosome. Addition of the ligand trimethoprim (TMP) can stabilize DHFR(DD), preventing proteasomal degradation of the fusion protein, and thereby inducing accumulation in cells. We synthesized and optimized TRimethoprim Analog Probes (TRAPs) that maintain stabilization activity and contain a terminal alkyne for Click functionalization and a thiol reactive group to covalently tag DHFR(DD). Click reaction with a biotin tag and subsequent streptavidin enrichment enables time-resolved mass spectrometric identification of interacting partners. We evaluated the timing of protein interactions of SARS-CoV-2 and SARS-CoV non-structural protein 15 (nsp15) over a 2-hour period. We found interactors GEMIN5 and YBX3, known regulators of SARS-CoV-2 infection that bind viral RNA as well as CACYBP and FHL1 which implicate nsp15 in disruption of host ERK1/2 signaling. We further revealed that these interactions remain relatively steady from 0 to 2 hours post translation of nsp15. TRAPPED methodology can be applied to determine sequence and timing of protein-protein interactions of temporally regulated biological processes such as viral infection or signal transduction.
Supplementary materials
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Supplemental Information
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Supplemental Figures and Synthetic Methods
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Supplemental Table 1
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List of primers
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Supplemental Table 2
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Protein level MS data SARS-CoV-2 nsp15
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Supplemental Table 3
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Peptide level MS data SARS-CoV-2 nsp15
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Supplemental Table 4
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SubcellulaRVis data SARS-CoV-2 nsp15
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Supplemental Table 5
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EnrichR data SARS-CoV-2 nsp15
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Supplemental Table S6
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Heatmap data SARS-CoV-2 nsp15
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Supplemental Table S7
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Protein level MS data SARS-CoV nsp15
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Supplemental Table S8
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Peptide level MS data SARS-CoV nsp15
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Supplemental Table S9
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SubcellulaRVis data SARS-CoV nsp15
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Supplemental Table S10
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Heatmap data SARS-CoV nsp15
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