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Publication Date:
June 2005
ISSN:
1437-4315
DOI:
10.1515/BC.1999.167

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Editor-in-Chief: Brüne, Bernhard

Editorial Board Member: Ludwig, Stephan / Sies, Helmut / Stoffel, Markus / Turk, Boris / Wittinghofer, Alfred / Baumeister, Wolfgang / Bergeron, John / Bogyo, Matthew / Bürkle, Alexander / Cadenas, Enrique / Chiti, Fabrizio / Dikic, Ivan / Dobson, Christopher / Driessen, Arnold / Fritz, Hans / Gevaert, Kris / Hammann, Christian / Hartl, F. Ulrich / Häussinger, Dieter / Hiscott, John / Igarashi, Yasuyuki / Klotz, Lars-Oliver / Krüger, Achim / Magdolen, Viktor / Müschen, Markus / Narumiya, Shuh / Naumann, Michael / Pejler, Gunnar / Pfanner, Nikolaus / Pike, Robert / Potempa, Jan / Saftig, Paul / Sandhoff, Konrad / Schaffner, Walter / Sinning, Irmgard / Sommerhoff, Christian P.

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Complete Amino Acid Sequence Determination of the Major Allergen of Peach (Prunus persica) Pru p1

Elide A. Pastorello / Claudio Ortolani / Chiara Baroglio / Valerio Pravettoni / Marco Ispano / Maria Gabriella Giuffrida / Donatella Fortunato / Laura Farioli / Mara Monza / Lorenzo Napolitano / Marco Sacco / Elisabetta Scibola / Amedeo Conti

Citation Information: Biological Chemistry. Volume 380, Issue 11, Pages 1315–1320, ISSN (Print) 1431-6730, DOI: 10.1515/BC.1999.167, June 2005

Publication History:
Published Online:
2005-06-01

Abstract

The major protein allergen of peach (Prunus persica), Pru p1, has recently been identified as a lipid transfer protein (LTP). The complete primary structure of Pru p1, obtained by direct amino acid sequence and liquid chromatography-mass spectrometry (LC-MS) analyses with the purified protein, is described here. The protein consists of 91 amino acids with a calculated molecular mass of 9178 Da. The amino acid sequence contains eight strictly conserved cysteines, as do all known LTPs, but secondary structure predictions failed to classify the peach 9 kDa protein as an ‘all-alpha type’, due to the high frequency of amino acids (nine prolines) disrupting alpha helices. Although the sequence similarity with maize LTP is only 63%, out of the 25 amino acids forming the inner surface of the tunnel-like hydrophobic cavity in maize ns-LTP 16 are identical and 7 similar in the peach homolog, supporting the hypothesis of a similar function.

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