Integrative phosphoproteome and interactome analysis of the role of Ubash3b in BCR-ABL signaling
Author:
Funder
Wellcome Trust/DBT India Alliance Margdarshi Fellowship
Publisher
Springer Science and Business Media LLC
Subject
Oncology,Cancer Research,Hematology
Link
http://www.nature.com/articles/s41375-019-0535-4.pdf
Reference15 articles.
1. Cutler JA, Tahir R, Sreenivasamurthy SK, Mitchell C, Renuse S, Nirujogi RS, et al. Differential signaling through p190 and p210 BCR-ABL fusion proteins revealed by interactome and phosphoproteome analysis. Leukemia. 2017;31:1513–24.
2. Reckel S, Hamelin R, Georgeon S, Armand F, Jolliet Q, Chiappe D, et al. Differential signaling networks of Bcr-Abl p210 and p190 kinases in leukemia cells defined by functional proteomics. Leukemia. 2017;31:1502–12.
3. Carpino N, Chen Y, Nassar N, Oh H-W. The Sts proteins target tyrosine phosphorylated, ubiquitinated proteins within TCR signaling pathways. Mol Immunol. 2009;46:3224–31.
4. Reckel S, Gehin C, Tardivon D, Georgeon S, Kükenshöner T, Löhr F, et al. Structural and functional dissection of the DH and PH domains of oncogenic Bcr-Abl tyrosine kinase. Nat Commun. 2017;8:2101.
5. Kim DI, Cutler JA, Na CH, Reckel S, Renuse S, Madugundu AK, et al. BioSITe: a method for direct detection and quantitation of site-specific biotinylation. J Proteome Res. 2018;17:759–69.
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