Structure-based identification of inositol polyphosphate 1-phosphatase from Entamoeba histolytica
Khaja Faisal Tarique1, Syed Arif Abdul Rehman1, Christian Betzel2
1School of Life Sciences, Jawaharlal Nehru University, New Delhi 110 067, India.
Abstract:
Inositol polyphosphate 1-phosphatase from Entamoeba histolytica (EhIPPase) is an Mg(2+)-dependent and Li(+)-sensitive enzyme that catalyzes the hydrolysis of inositol 1,4-bisphosphate [Ins(1,4)P2] into myo-inositol 1-monophosphate and PO4(3-). In the present work, EhIPPase has been biochemically identified and its crystal structure has been determined in the presence of Mg(2+) and PO4(3-) at 2.5 Å resolution. This enzyme was previously classified as a 3'(2'),5'-bisphosphate nucleotidase in the NCBI, but its biochemical activity and structural analysis suggest that this enzyme behaves more like an inositol polyphosphate 1-phosphatase. The ability of EhIPPase to hydrolyze the smaller Ins(1,4)P2 better than the bulkier 3'-phosphoadenosine 5'-phosphate (PAP) is explained on the basis of the orientations of amino-acid residues in the binding site. This structure is the first of its class to be determined from any protozoan parasite, and is the third to determined among all organisms, following its rat and bovine homologues. The three-dimensional fold of EhIPPase is similar to those of other members of the inositol monophosphatase superfamily, which also includes inositol monophosphatase, 3'(2'),5'-bisphosphate nucleotidase and fructose-1,6-bisphosphate 1-phosphatase. They all share conserved residues essential for metal binding and substrate hydrolysis, with the motif D-Xn-EE-Xn-DP(I/L)DG(S/T)-Xn-WD-Xn-GG. The structure is divided into two domains, namely α+β and α/β, and the substrate and metal ions bind between them. However, the ability of each enzyme class to act specifically on its cognate substrate is governed by the class-specific amino-acid residues at the active site.
Insights
Biochemical and structural analysis reveals Entamoeba histolytica inositol polyphosphate 1-phosphatase (EhIPPase) functions as an inositol polyphosphate 1-phosphatase, not a bisphosphate nucleotidase. This study provides the first structural insights into this enzyme class from a protozoan parasite.
Area of Science:
- Biochemistry
- Structural Biology
- Parasitology
Background:
- Inositol polyphosphate 1-phosphatase (EhIPPase) from Entamoeba histolytica is an Mg(2+)-dependent enzyme.
- It catalyzes the hydrolysis of inositol 1,4-bisphosphate into myo-inositol 1-monophosphate and phosphate.
Purpose of the Study:
- Biochemically identify and determine the crystal structure of EhIPPase.
- Clarify the enzyme's classification and substrate specificity.
- Provide structural insights into protozoan parasite enzymes.
Main Methods:
- Biochemical characterization of EhIPPase.
- X-ray crystallography to determine the enzyme's structure at 2.5 Å resolution in the presence of Mg(2+) and PO4(3-).
- Comparative structural analysis with homologous enzymes.
Main Results:
- EhIPPase was biochemically identified and its crystal structure determined.
- Structural and biochemical data support classification as an inositol polyphosphate 1-phosphatase, distinct from its previous classification.
- The enzyme's active site orientation explains its preference for Ins(1,4)P2 over PAP.
- This is the first structure of its kind from a protozoan parasite.
Conclusions:
- EhIPPase functions as an inositol polyphosphate 1-phosphatase.
- The determined structure provides a molecular basis for substrate specificity within the inositol monophosphatase superfamily.
- This work offers crucial structural information for understanding parasitic enzymes.


