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Development of a high-throughput crystal structure-determination platform for JAK1 using a novel metal-chelator soaking system.

Acta Crystallogr F Struct Biol Commun. 2016; 
Caspers NL, Han S, Rajamohan F, Hoth LR, Geoghegan KF, Subashi TA, Vazquez ML, Kaila N, Cronin CN, Johnson E, Kurumbail RG.
Products/Services Used Details Operation
Codon Optimization Protein expression and purification The DNA encoding residues 841–1154 of the human JAK1 kinase domain was codon-optimized for insect-cell expression at GenScript and was cloned into a modified pFastBac vector (see Table 1). Get A Quote

摘要

Crystals of phosphorylated JAK1 kinase domain were initially generated in complex with nucleotide (ADP) and magnesium. The tightly bound Mg2+-ADP at the ATP-binding site proved recalcitrant to ligand displacement. Addition of a molar excess of EDTA helped to dislodge the divalent metal ion, promoting the release of ADP and allowing facile exchange with ATP-competitive small-molecule ligands. Many kinases require the presence of a stabilizing ligand in the ATP site for crystallization. This procedure could be useful for developing co-crystallization systems with an exchangeable ligand to enable structure-based drug design of other protein kinases.

关键词

Janus kinase; crystal soaking; kinases; ligand exchange; structure-based drug design