Roles of individual EF-hands in the activation of m-calpain by calcium

Author:

DUTT Previn1,ARTHUR J. C. Simon1,GROCHULSKI Pawel23,CYGLER Miroslaw2,ELCE John S.1

Affiliation:

1. Department of Biochemistry, Queen's University, Kingston, Ontario K7L 3N6, Canada

2. Biotechnology Research Institute, NRC, Montreal, Quebec H4P 2R2, Canada

3. Institute of Physics, Technical University of Lodz, 93-005 Lodz, Poland

Abstract

m-Calpain is a heterodimeric, cytosolic, thiol protease, which is activated by Ca2+-binding to EF-hands in the C-terminal domains of both subunits. There are four potential Ca2+-binding EF-hands in each subunit, but their relative affinities for Ca2+ are not known. In the present study mutations were made in both subunits to reduce the Ca2+-binding affinity at one or more EF-hands in one or both subunits. X-ray crystallography of some of the mutated small subunits showed that Ca2+ did not bind to the mutated EF-hands, but that its binding at other sites was not affected. The structures of the mutant small subunits in the presence of Ca2+ were otherwise identical to that of the Ca2+-bound wild-type small subunit. In the whole enzyme the wild-type macroscopic Ca2+ requirement (Kd) was approx. 350 μM. The mutations did not affect the maximum specific activity of the enzyme, but caused increases in Kd, which were characteristic of each site. All the EF-hands could be mutated in various combinations without loss of activity, but preservation of at least one wild-type EF-hand 3 sequence was required to maintain Kd values lower than 1 mM. The results suggest that all the EF-hands can contribute co-operatively to calpain activation, but that EF-hand 3, in both subunits, has the highest intrinsic affinity for Ca2+ and provides the major driving force for conformational change.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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