Mitochondrial hotdog-fold thioesterase

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Thioesterase superfamily members 4 (Them4) and 5 (Them5) are proteins found in human [https://en.wikipedia.org/wiki/Mitochondrion mitochondria]. These proteins' name come from the '''single hotdog-fold thioesterase''' domain in their tertiary structure.
Thioesterase superfamily members 4 (Them4) and 5 (Them5) are proteins found in human [https://en.wikipedia.org/wiki/Mitochondrion mitochondria]. These proteins' name come from the '''single hotdog-fold thioesterase''' domain in their tertiary structure.
The hotdog fold is characterized by a curved antiparallel [[beta sheet]] around a long [[alpha helix]]. In the case of Them5, this domain encompasses residues 125 to 237. The core beta sheet in Them5 is six-stranded
The hotdog fold is characterized by a curved antiparallel [[beta sheet]] around a long [[alpha helix]]. In the case of Them5, this domain encompasses residues 125 to 237. The core beta sheet in Them5 is six-stranded
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To analyze these proteins, we shall use the atomic structure of the human Them4 complexed with undecan-2-one-CoA, which is a structural analog of acyl-CoA's and inhibitor of this protein.
 
It is notable that Them4 and Them5 possess a conserved HGG…D…T motif within the hotdog fold. In Them4, the catalytic residues are Asp161 and Thr177, which interact through a [[hydrogen bond]] between the carboxylate in aspartate and the [https://en.wikipedia.org/wiki/Hydroxy_group hydroxyl] in threonine. For Them5, the catalytic residues are Asp167 and Thr183.
It is notable that Them4 and Them5 possess a conserved HGG…D…T motif within the hotdog fold. In Them4, the catalytic residues are Asp161 and Thr177, which interact through a [[hydrogen bond]] between the carboxylate in aspartate and the [https://en.wikipedia.org/wiki/Hydroxy_group hydroxyl] in threonine. For Them5, the catalytic residues are Asp167 and Thr183.
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Besides the core hotdog-fold, in both Them4 and Them5 there is another alpha helix in each monomer. This element of [[secondary structure]] is tightly attached to the convex side of the curved beta sheet owing to the hydrophobic effect. More specifically, it is an amphiphilic alpha helix whose apolar residues are spatially collapsed over apolar residues in strands 1 and 2 of the core beta sheet. For Them4, this alpha helix is formed by residues 55 to 68, while for Them5 the respective residues are 64 to 79.
Besides the core hotdog-fold, in both Them4 and Them5 there is another alpha helix in each monomer. This element of [[secondary structure]] is tightly attached to the convex side of the curved beta sheet owing to the hydrophobic effect. More specifically, it is an amphiphilic alpha helix whose apolar residues are spatially collapsed over apolar residues in strands 1 and 2 of the core beta sheet. For Them4, this alpha helix is formed by residues 55 to 68, while for Them5 the respective residues are 64 to 79.
Interestingly, at each of the flanking regions of the additional alpha helix, there is a [https://en.wikipedia.org/wiki/Stacking_(chemistry) pi-stacking] interaction that also contributes to maintaining the local fold. Trp62 and Tyr70 make this interaction at the N-terminal side of the alpha helix while Phe73 and Trp82 are the analogues at the C-terminal side.
Interestingly, at each of the flanking regions of the additional alpha helix, there is a [https://en.wikipedia.org/wiki/Stacking_(chemistry) pi-stacking] interaction that also contributes to maintaining the local fold. Trp62 and Tyr70 make this interaction at the N-terminal side of the alpha helix while Phe73 and Trp82 are the analogues at the C-terminal side.
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== Interaction with the substrate ==
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In order to study the binding of acyl-CoA's to Them4, Zhao et al. (2012) obtained by X-ray crystallography the atomic structure of the human Them4 complexed with undecan-2-one-CoA, which is a structural analog of acyl-CoA's and inhibitor of this protein.
== Function ==
== Function ==

Revision as of 19:32, 26 May 2024

Overview of thioesterases

Thioesterases are enzymes that catalyze the hydrolysis of thioester bonds, which are the linkage between a carbonyl and a sulfur atom. The ATP-dependent formation of a thioester bond from a carboxylate and a thiol in biomolecules makes them more reactive and is particularly an important commitment step in lipid metabolism. Therefore, thioesterases counteract this activation by releasing upon hydrolysis a molecule with the more stable carboxylate group. For this reason, thioesterases are found at the end of some metabolic pathways but they also may act as regulators of flux.

There are two main families of thioesterases which are distinguished by their folding, named the α/β-hydrolases and the hotdog-fold hydrolases. Notably, these two different families are evolutionarily distant, so the thioesterase activity is a shared feature owing to convergent evolution.


Human Them4 (thioesterase superfamily member 4 - PDB code 4gah)

Drag the structure with the mouse to rotate

References

Zhao, H., Martin, B. M., Bisoffi, M., & Dunaway-Mariano, D. (2009). The Akt C-terminal modulator protein is an acyl-CoA thioesterase of the Hotdog-Fold family. Biochemistry, 48(24), 5507-5509. https://doi.org/10.1021/bi900710w

Zhao, H., Lim, K., Choudry, A., Latham, J. A., Pathak, M. C., Dominguez, D., ... & Dunaway-Mariano, D. (2012). Correlation of structure and function in the human hotdog-fold enzyme hTHEM4. Biochemistry, 51(33), 6490-6492. https://doi.org/10.1021/bi300968n

Zhuravleva, E., Gut, H., Hynx, D., Marcellin, D., Bleck, C. K., Genoud, C., ... & Hemmings, B. A. (2012). Acyl coenzyme A thioesterase Them5/Acot15 is involved in cardiolipin remodeling and fatty liver development. Molecular and cellular biology, 32(14), 2685-2697. https://doi.org/10.1128/MCB.00312-12

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