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Mechanism of ATP hydrolysis in the Hsp70 BiP nucleotide-binding domain

Nature Communications. 2025-06; 
Guillaume Mas , Sebastian Hiller Biozentrum, University of Basel, Basel, Switzerland
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Gene Synthesis Human BiP NBD lacking its ER signal sequence (residues 19-406) with an N-terminal His6-Tag including a TEV cleavage sequence was generated by introducing a mutation (G407 to stop) using the QuikChange II mutagenesis protocol (Stratagene) into the Human BiP (residues 19-654) gene synthetized by Genscript. Get A Quote

Abstract

The 70 kDa heat shock protein (Hsp70) family of molecular chaperones ensures protein biogenesis and homeostasis, driven by ATP hydrolysis. Here, we introduce in-cyclo NMR, an experimental setup that combines high-resolution NMR spectroscopy with an ATP recovery and a phosphate removal system. In-cyclo NMR simultaneously resolves kinetic rates and structural information along functional cycles of ATP-driven molecular machines. We benchmark the method on the nucleotide binding domain (NBD) of the human Hsp70 chaperone BiP. The protein cycles through ATP binding, hydrolysis, and two parallel pathways of product release. We determine the kinetic rates of all eleven underlying elementary reactions and show these to ... More

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