Structural characterization of the Pet c 1.0201 PR-10 protein isolated from roots of Petroselinum crispum (Mill.) Fuss.

Phytochemistry

Institute of Chemistry, Centre for Glycomics, Slovak Academy of Sciences, Dúbravská cesta 9, SK-84538 Bratislava, Slovakia. Electronic address:

Published: July 2020

AI Article Synopsis

  • Researchers identified the complete primary structure of the Petroselinum crispum protein Pet c 1.0201, which co-purifies with another enzyme and has similarities in molecular mass and isoelectric points.
  • The protein belongs to the PR-10 family and is closely related to allergens from celery and carrot, with its details stored in the UniProt Knowledgebase.
  • Molecular modeling confirmed its dimeric structure typical of Bet v 1 allergens, but its behavior in salt solutions differed from that of a celery allergen, highlighting distinct dimerization properties.

Article Abstract

The native dimeric Petroselinum crispum (Mill.) Fuss protein Pet c 1.0201 and a monomeric xyloglucan endotransglycosylase enzyme (Garajova et al., 2008) isolated from the root cells co-purify and share similar molecular masses and acidic isoelectric points. In this work, we determined the complete primary structure of the parsley Pet c 1.0201 protein, based on tryptic and chymotryptic peptides followed by the manual micro-gradient chromatographic separation coupled with offline MALDI-TOF/TOF mass spectrometry. The bioinformatics approach enabled us to include the parsley protein into the PR-10 family, as it exhibited the highest protein sequence identity with the Apium graveolens Api g 1.0201 allergen and the major Daucus carota allergen Dau c 1.0201. Hence, we designated the Petroselinum crispum protein as Pet c 1.0201 and deposited it in the UniProt Knowledgebase under the accession C0HKF5. 3D protein homology modelling and molecular dynamics simulations of the Pet c 1.0201 dimer confirmed the typical structure of the Bet v 1 family allergens, and the potential of the Pet c 1.0201 protein to dimerize in water. However, the behavioural properties of Pet c 1.0201 and the celery allergen Api g 1.0101 differed in the presence of salts due to transiently and stably formed dimeric forms of Pet c 1.0201 and Api g 1.0101, respectively.

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Source
http://dx.doi.org/10.1016/j.phytochem.2020.112368DOI Listing

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