Bryan H. Chang, Ph.D. - Publications
Affiliations: | Harvard University, Cambridge, MA, United States |
Area:
Chemical biologyYear | Citation | Score | |||
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2013 | Gujral TS, Karp ES, Chan M, Chang BH, MacBeath G. Family-wide investigation of PDZ domain-mediated protein-protein interactions implicates β-catenin in maintaining the integrity of tight junctions. Chemistry & Biology. 20: 816-27. PMID 23790492 DOI: 10.1016/J.Chembiol.2013.04.021 | 0.611 | |||
2011 | Chang BH, Gujral TS, Karp ES, BuKhalid R, Grantcharova VP, MacBeath G. A systematic family-wide investigation reveals that ~30% of mammalian PDZ domains engage in PDZ-PDZ interactions. Chemistry & Biology. 18: 1143-52. PMID 21944753 DOI: 10.1016/J.Chembiol.2011.06.013 | 0.629 | |||
2010 | Kaushansky A, Allen JE, Gordus A, Stiffler MA, Karp ES, Chang BH, MacBeath G. Quantifying protein-protein interactions in high throughput using protein domain microarrays. Nature Protocols. 5: 773-90. PMID 20360771 DOI: 10.1038/Nprot.2010.36 | 0.644 | |||
2009 | Gordus A, Krall JA, Beyer EM, Kaushansky A, Wolf-Yadlin A, Sevecka M, Chang BH, Rush J, MacBeath G. Linear combinations of docking affinities explain quantitative differences in RTK signaling. Molecular Systems Biology. 5: 235. PMID 19156127 DOI: 10.1038/Msb.2008.72 | 0.522 | |||
2008 | Chen JR, Chang BH, Allen JE, Stiffler MA, MacBeath G. Predicting PDZ domain-peptide interactions from primary sequences. Nature Biotechnology. 26: 1041-5. PMID 18711339 DOI: 10.1038/Nbt.1489 | 0.614 | |||
2008 | Kaushansky A, Gordus A, Chang B, Rush J, MacBeath G. A quantitative study of the recruitment potential of all intracellular tyrosine residues on EGFR, FGFR1 and IGF1R. Molecular Biosystems. 4: 643-53. PMID 18493663 DOI: 10.1039/B801018H | 0.598 | |||
2008 | Chen JR, Chang BH, Allen JE, Stiffler MA, MacBeath G. Predicting PDZ domain-peptide interactions from primary sequences (Nature Biotechnology (2008) 26, (1041-1045)) Nature Biotechnology. 26: 1193. DOI: 10.1038/Nbt1008-1193C | 0.533 | |||
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