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Short linear motifs (SLiMs) form dynamic protein-protein interactions essential for signaling; however, sequence degeneracy and low binding affinities make them difficult to identify. In this study, we employed multiple, unbiased systematic approaches for SLiM discovery to elucidate the regulatory n...
ORGANISM(S): Homo sapiens (Human) 
2020-12-02 | PXD017868 | Pride
The files are associated with a manuscript submitted for publication by Callie P. Wigington et al. The main goal of this paper was to identify how calcineurin (CN) binds substrates via PxIxIT and LxVP motifs, elucidated through short linear motifs (SLiM) discovery.
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2019-04-16 | MSV000083697 | MassIVE
The files are associated with a manuscript submitted for publication by Callie P. Wigington et al. The main goal of this paper was to identify how calcineurin (CN) binds substrates via PxIxIT and LxVP motifs, elucidated through short linear motifs (SLiM) discovery.
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2019-04-16 | MSV000083695 | MassIVE
The files are associated with a manuscript submitted for publication by Callie P. Wigington et al. The main goal of this paper was to identify how calcineurin (CN) binds substrates via PxIxIT and LxVP motifs, elucidated through short linear motifs (SLiM) discovery.
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2019-04-15 | MSV000083685 | MassIVE
Short linear motifs (SLiMs) are the most ubiquitous protein interaction modules in the unstructured regions of the human proteome. Despite their central role in protein function, our understanding of the contribution of SLiMs to cellular homeostasis remains limited. To address this, we designed base...
ORGANISM(S): Homo sapiens (Human) 
2026-01-14 | PXD055750 | Pride
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