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Structural basis for active single and double ring complexes in human mitochondrial Hsp60-Hsp10 chaperonin

Authors: Yacob Gomez-Llorente; Fady Jebara; Malay Patra; Radhika Malik; Shahar Nisemblat; Orna Chomsky-Hecht; Avital Parnas; +3 Authors

Structural basis for active single and double ring complexes in human mitochondrial Hsp60-Hsp10 chaperonin

Abstract

AbstractmHsp60-mHsp10 assists the folding of mitochondrial matrix proteins without the negative ATP binding inter-ring cooperativity of GroEL-GroES. Here we report the crystal structure of an ATP (ADP:BeF3-bound) ground-state mimic double-ring mHsp6014-(mHsp107)2 football complex, and the cryo-EM structures of the ADP-bound successor mHsp6014-(mHsp107)2 complex, and a single-ring mHsp607-mHsp107 half-football. The structures explain the nucleotide dependence of mHsp60 ring formation, and reveal an inter-ring nucleotide symmetry consistent with the absence of negative cooperativity. In the ground-state a two-fold symmetric H-bond and a salt bridge stitch the double-rings together, whereas only the H-bond remains as the equatorial gap increases in an ADP football poised to split into half-footballs. Refolding assays demonstrate obligate single- and double-ring mHsp60 variants are active, and complementation analysis in bacteria shows the single-ring variant is as efficient as wild-type mHsp60. Our work provides a structural basis for active single- and double-ring complexes coexisting in the mHsp60-mHsp10 chaperonin reaction cycle.

Keywords

Protein Folding, Protein Conformation, Science, Hydrolysis, Q, Cryoelectron Microscopy, Hydrogen Bonding, Chaperonin 60, Crystallography, X-Ray, Protein Engineering, Biochemistry, Article, Mitochondria, Adenosine Diphosphate, Mitochondrial Proteins, Adenosine Triphosphate, Cytosol, Chaperonin 10, Humans, Structural biology, Protein Binding

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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
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