| Literature DB >> 28741386 |
Rosa Perfetto1, Sonia Del Prete1,2, Daniela Vullo2, Vincenzo Carginale1, Giovanni Sansone3, Carmela M A Barone4, Mosè Rossi1, Fatmah A S Alasmary5, Sameh M Osman5, Zeid AlOthman5, Claudiu T Supuran2,5,6, Clemente Capasso1.
Abstract
We cloned, expressed, purified, and determined the kinetic constants of the recombinant α-carbonic anhydrase (rec-MgaCA) identified in the mantle tissue of the bivalve Mediterranean mussel, Mytilus galloprovincialis. In metazoans, the α-CA family is largely represented and plays a pivotal role in the deposition of calcium carbonate biominerals. Our results demonstrated that rec-MgaCA was a monomer with an apparent molecular weight of about 32 kDa. Moreover, the determined kinetic parameters for the CO2 hydration reaction were kcat = 4.2 × 105 s-1 and kcat/Km of 3.5 × 107 M-1 ×s-1. Curiously, the rec-MgaCA showed a very similar kinetic and acetazolamide inhibition features when compared to those of the native enzyme (MgaCA), which has a molecular weight of 50 kDa. Analysing the SDS-PAGE, the protonography, and the kinetic analysis performed on the native and recombinant enzyme, we hypothesised that probably the native MgaCA is a multidomain protein with a single CA domain at the N-terminus of the protein. This hypothesis is corroborated by the existence in mollusks of multidomain proteins with a hydratase activity. Among these proteins, nacrein is an example of α-CA multidomain proteins characterised by a single CA domain at the N-terminus part of the entire protein.Entities:
Keywords: Carbonic anhydrase; bivalve; hydratase activity; metalloenzymes; multidomain protein; mussel; protonography; α-class enzyme
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Year: 2017 PMID: 28741386 PMCID: PMC6010101 DOI: 10.1080/14756366.2017.1353502
Source DB: PubMed Journal: J Enzyme Inhib Med Chem ISSN: 1475-6366 Impact factor: 5.051
Figure 1.Blast output reporting the CA library sequences. By going down the list, it is possible to see less than perfect matches, slowly degrading as the corresponding score decreases and the E-value increases. The E-value is an assessment of the statistical significance of the score. E-value close to 1 are a warning that the alignment is not reliable.
Figure 2.Alignment of α-CA sequences from Mytilus galloprovincialis (MgaCA, Accession number: ALF62133.1) Corallium rubrum (CruCA4, Accession number: KU557746), Homo sapiens I (hCAI, Accession number: NP001729) and II (hCAII, Accession number: P00918), hCA I numbering system was used. The zinc ligands (His94, 96 and 119) and the gate-keeper residues (Glu106 and Thr199) are conserved in aligned sequences; while the proton shuttle residue (His64) is preserved only in the human enzymes. The asterisk (*) indicates identity at all aligned positions; the symbol (:) relates to conserved substitutions, while (.) means that semi-conserved substitutions are observed. Multialignment was performed with the program Muscle, version 3.1.
Figure 3(A and B). A. SDS-PAGE; B. Protonography. In both panels: Lane 1, Molecular weight markers; lane 2, the native MgaCA purified from the mantles of M. galloprovincialis; lane 3, the recombinant rec-MgaCA, lane 4, the commercial bovine CA.
Kinetic parameters for the CO2 hydration reaction catalysed by the rec-MgaCA, the purified native mussel CA (MgaCA), the Homo sapiens CA isoforms (hCA I and hCA II) and coral CA isoforms (SpiCA1 and SpiCA2 from Stylophora pistillata; CruCA4 from Corallium rubrum). Acetazolamide (AAZ) inhibition data are also shown.
| Enzyme | Class | |||
|---|---|---|---|---|
| hCA I | α | 2.0 × 105 | 5.0 × 107 | 250 |
| hCA II | α | 1.4 × 106 | 1.5 × 108 | 12 |
| SpiCA1 | α | 3.1 × 105 | 4.6 × 107 | 16 |
| SpiCA2 | α | 5.6 × 105 | 8.3 × 107 | 74 |
| CruCA4 | α | 2.4 × 105 | 5.2 × 107 | 450 |
| MgaCA | α | 4.1 × 105 | 3.6 × 107 | 380 |
| rec-MgaCA | α | 4.2 × 105 | 3.5 × 107 | 361 |
Errors in the range of ±5% of the reported data from three different assays.