Bet v 1l is a naturally occurring hypoallergenic isoform of the major birch pollen allergen Bet v 1. The Bet v 1 protein belongs to the ubiquitous family of pathogenesis-related plant proteins (PR-10), which are produced in defense-response to various pathogens. Although the allergenic properties of PR-10 proteins have been extensively studied, their biological function in plants is not known. The crystal structure of Bet v 1l in complex with deoxycholate has been determined to a resolution of 1.9A using the method of molecular replacement. The structure reveals a large hydrophobic Y-shaped cavity that spans the protein and is partly occupied by two deoxycholate molecules which are bound in tandem and only partially exposed to solvent. This finding indicates that the hydrophobic cavity may have a role in facilitating the transfer of apolar ligands. The structural similarity of deoxycholate and brassinosteroids (BRs) ubiquitous plant steroid hormones, prompted the mass spectrometry (MS) study in order to examine whether BRs can bind to Bet v 1l. The MS analysis of a mixture of Bet v 1l and BRs revealed a specific non-covalent interaction of Bet v 1l with brassinolide and 24-epicastasterone. Together, our findings are consistent with a general plant-steroid carrier function for Bet v 1 and related PR-10 proteins. The role of BRs transport in PR-10 proteins may be of crucial importance in the plant defense response to pathological situations as well as in growth and development.

Crystal structure of a hypoallergenic isoform of the major birch pollen allergen Bet v 1 and its likely biological function as a plant steroid carrier.

Lamba D;
2003

Abstract

Bet v 1l is a naturally occurring hypoallergenic isoform of the major birch pollen allergen Bet v 1. The Bet v 1 protein belongs to the ubiquitous family of pathogenesis-related plant proteins (PR-10), which are produced in defense-response to various pathogens. Although the allergenic properties of PR-10 proteins have been extensively studied, their biological function in plants is not known. The crystal structure of Bet v 1l in complex with deoxycholate has been determined to a resolution of 1.9A using the method of molecular replacement. The structure reveals a large hydrophobic Y-shaped cavity that spans the protein and is partly occupied by two deoxycholate molecules which are bound in tandem and only partially exposed to solvent. This finding indicates that the hydrophobic cavity may have a role in facilitating the transfer of apolar ligands. The structural similarity of deoxycholate and brassinosteroids (BRs) ubiquitous plant steroid hormones, prompted the mass spectrometry (MS) study in order to examine whether BRs can bind to Bet v 1l. The MS analysis of a mixture of Bet v 1l and BRs revealed a specific non-covalent interaction of Bet v 1l with brassinolide and 24-epicastasterone. Together, our findings are consistent with a general plant-steroid carrier function for Bet v 1 and related PR-10 proteins. The role of BRs transport in PR-10 proteins may be of crucial importance in the plant defense response to pathological situations as well as in growth and development.
2003
Istituto di Cristallografia - IC
325
123
133
Birch pollen
Vaxin Theraphy
Plant Pathogenesis
Steroid Carriers
Brassinosteroids
A recent report showed a previously unexpected structural homology between Bet v 1 and the steroidogenic acute regulatory protein lipid transfer domains that are involved in sterol binding and translocation. The observed binding of DCA to PR-10 proteins demonstrates that the Bet v 1-like fold has evolved for a steroid-binding function. DCA promotes lipid metabolism in mammals and is not found, as a metabolite in plants; thus cannot be the natural ligand for the PR-10 proteins. However, bile salts share a striking structural similarity with brassinosteroids (BR), a family of ubiquitous plant steroid hormones that are implicated in plant development and growth processes. Mutant plants deficient in BRs biosynthesis show phenotypes of dwarfism, reduced fertility and light independent development. Therefore, DCA can be considered acting as a molecular mimic of BRs, which we propose as the natural ligands of Bet v1l and homologous PR-10 proteins. Impact factor (2002): 5.359 Citations: 12
9
info:eu-repo/semantics/article
262
Markovichousley, Z; Degano, M; Lamba, D; von RoepenackLahaye, E; Clemens, S; Susani, M; Ferreira, ; Scheiner, O; Breiteneder, H
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/119187
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