Hsp93 Atpase

Hsp93 ATPase is an ATP-dependent molecular chaperone that helps maintain protein quality and trafficking, particularly in chloroplasts, where it supports essential processes such as protein import and degradation. As a member of the AAA+ ATPase family, Hsp93 uses two conserved ATPase domains to bind and hydrolyze ATP, converting chemical energy into conformational changes that remodel client proteins and can drive their movement through associated complexes. Hsp93 works with the Clp protease system to unfold selected substrates for degradation and participates in chloroplast protein translocation, making it important for proteostasis, organelle biogenesis, and plant development.

Hsp93 Atpase - Related Videos

Research

JoVE Journal - Biology

Measuring In Vitro ATPase Activity for Enzymatic Characterization

0 Views •

Cited by 27 •

2016

We describe a basic protocol for quantitating in vitro ATPase activity. This protocol can be optimized based on the level of activity and requirements for a given purified ATPase.

Biochemical Reconstitution of Steroid Receptor•Hsp90 Protein Complexes and Reactivation of Ligand Binding

0 Views •

Cited by 1 •

2011

An in vitro method for preparing functional glucocorticoid receptor (GR)•hsp90 protein complexes from purified proteins and cellular lysates is described. The method utilizes immunoadsorption of recombinant GR followed by salt-stripping and protein complex reconstitution. The importance of cofactors and buffer conditions are discussed, as are potential method applications.

Isolation of F1-ATPase from the Parasitic Protist Trypanosoma brucei

0 Views •

Cited by 1 •

2019

This protocol describes the purification of F1-ATPase from the cultured insect stage of Trypanosoma brucei. The procedure yields a highly pure, homogeneous, and active complex suitable for structural and enzymatic studies.

Chemical Modification of the Tryptophan Residue in a Recombinant Ca2+-ATPase N-domain for Studying Tryptophan-ANS FRET

0 Views •

2021

ANS binds to the Ca2+-ATPase recombinant N-domain. Fluorescence spectra display a FRET-like pattern upon excitation at a wavelength of 295 nm. NBS-mediated chemical modification of Trp quenches the fluorescence of the N-domain, which leads to the absence of energy transfer (FRET) between the Trp residue and ANS.

Purification of the Sarco-Endoplasmic Reticulum Ca2+-ATPase from Rabbit Muscle

0 Views •

2025

This protocol describes an improved SERCA purification method, which includes the disaccharide trehalose in the final centrifugation step. This carbohydrate stabilizes proteins under harsh conditions. The purified SERCA was catalytically active and displayed high purity, making it suitable for structural and functional studies.

View All Results

FAQs

Related Topics