Steric and conformational features of the aconitase mechanism
- 1 May 1995
- journal article
- research article
- Published by Wiley in Proteins-Structure Function and Bioinformatics
- Vol. 22 (1) , 1-11
- https://doi.org/10.1002/prot.340220102
Abstract
Crystal structures of mitochondrial aconitase with α‐methylisocitrate and with sulfate bound have been solved and refined at 2.0 Å resolution with R factors of 18.2 and 16.8%, respectively. The steric factors and conformational effects observed in both new structures support the proposed mechanism for the overall reaction catalyzed by aconitase. The alternate substrate α;methylisocitrate is derived from α;methyl‐cis‐aconitate during crystallization and is observed to bind in the active site in a manner very similar to that observed for isocitrate. The methyl group is accommodated by favorable contact with Ile‐425. However, the other potential hydration product of α;methyl‐cis‐aconitate,α;methylcitrate, cannot be accommodated in the active site due to steric conflict of the methyl group with Asp‐165. The results are consistent with the requirement that cis‐aconitate must bind in two ways, in the citrate mode and in the isocitrate mode. Crystals of aconitase with sulfate bound are isomorphous to those with isocitrate bound. However, the structure displays significant conformational changes, providing a model for the substrate‐free state of enzyme. Three water molecules bind in place of the Cα; and Cβ‐hydroxyl and carboxyl groups of isocitrate, while sulfate binds in place of the Cγ;carboxyl Group. Side chains of Ser‐642 and Arg‐447 in the active site rotate to pair with other side chains in the absence of substrate. The new conformation of Arg‐447 triggers a concerted set of shifts which transmits conformational change to the surface of the protein, 30 Å from the active site. In the absence of substrate, a chain segment containing the [4Fe‐4S] ligand Cys‐358 also shifts, resulting in the net translation and reorientation of the Fe‐S cluster.Keywords
This publication has 21 references indexed in Scilit:
- Low-Barrier Hydrogen Bonds and Enzymic CatalysisScience, 1994
- Crystal Structures of Aconitase with Trans-aconitate and Nitrocitrate BoundJournal of Molecular Biology, 1994
- Regulating the fate of mRNA: The control of cellular iron metabolismCell, 1993
- Crystal structures of aconitase with isocitrate and nitroisocitrate boundBiochemistry, 1992
- Characterization of the iron-sulfur [4Fe-4S]+ cluster at the active site of aconitase by iron-57, sulfur-33, and nitrogen-14 electron nuclear double resonance spectroscopyBiochemistry, 1990
- Oxygen-17, proton, and deuterium electron nuclear double resonance characterization of solvent, substrate, and inhibitor binding to the iron-sulfur [4Fe-4S]+ cluster of aconitaseBiochemistry, 1990
- Engineering of protein bound iron‐sulfur clustersEuropean Journal of Biochemistry, 1989
- AconitasePublished by American Chemical Society (ACS) ,1988
- pH profiles and isotope effects for aconitases from Saccharomycopsis lipolytica, beef heart, beef liver. .alpha.-Methyl-cis-aconitate and threo-Ds-.alpha.-methylisocitrate as substratesBiochemistry, 1984
- Nitro analogs of citrate and isocitrate as transition-state analogs for aconitaseBiochemistry, 1980