Sinaniotis, Athanassios

Link to this page

Authority KeyName Variants
492e697d-420f-4274-a9f9-dafc960c602e
  • Sinaniotis, Athanassios (2)
Projects

Author's Bibliography

Molecular Characterization of Recombinant Mus a 5 Allergen from Banana Fruit

Mrkić, Ivan; Abughren, Mohamed; Nikolić, Jasna; Anđelković, Uroš; Vassilopoulou, Emilia; Sinaniotis, Athanassios; Petersen, Arnd; Papadopoulos, Nikolaos G.; Gavrović-Jankulović, Marija

(Humana Press Inc, Totowa, 2014)

TY  - JOUR
AU  - Mrkić, Ivan
AU  - Abughren, Mohamed
AU  - Nikolić, Jasna
AU  - Anđelković, Uroš
AU  - Vassilopoulou, Emilia
AU  - Sinaniotis, Athanassios
AU  - Petersen, Arnd
AU  - Papadopoulos, Nikolaos G.
AU  - Gavrović-Jankulović, Marija
PY  - 2014
UR  - https://cherry.chem.bg.ac.rs/handle/123456789/1774
AB  - Allergy to banana fruit appears to have become an important cause of fruit allergy in Europe. Among five allergens that have been found, beta-1,3-glucanase denoted as Mus a 5 was identified as a candidate allergen for the component-resolved allergy diagnosis of banana allergy. Because of the variations in protein levels in banana fruit, in this study Mus a 5 was produced as a fusion protein with glutathione-S-transferase in Escherichia coli. The recombinant Mus a 5 was purified under native conditions by a combination of affinity, ion-exchange, and reversed phase chromatography. N-terminal sequence was confirmed by Edman degradation and 55 % of the primary structure was identified by mass fingerprint, while the secondary structure was assessed by circular dichroism spectroscopy. IgG reactivity of recombinant protein was shown in 2-D immunoblot with anti-Mus a 5 antibodies, while IgG and IgE binding to natural Mus a 5 was inhibited with the recombinant Mus a 5 in immunoblot inhibition test. IgE reactivity of recombinant Mus a 5 was shown in ELISA within a group of ten persons sensitized to banana fruit. Recombinant Mus a 5 is a novel reagent suitable for the component-resolved allergy diagnosis of banana allergy.
PB  - Humana Press Inc, Totowa
T2  - Molecular Biotechnology
T1  - Molecular Characterization of Recombinant Mus a 5 Allergen from Banana Fruit
VL  - 56
IS  - 6
SP  - 498
EP  - 506
DO  - 10.1007/s12033-013-9719-8
ER  - 
@article{
author = "Mrkić, Ivan and Abughren, Mohamed and Nikolić, Jasna and Anđelković, Uroš and Vassilopoulou, Emilia and Sinaniotis, Athanassios and Petersen, Arnd and Papadopoulos, Nikolaos G. and Gavrović-Jankulović, Marija",
year = "2014",
abstract = "Allergy to banana fruit appears to have become an important cause of fruit allergy in Europe. Among five allergens that have been found, beta-1,3-glucanase denoted as Mus a 5 was identified as a candidate allergen for the component-resolved allergy diagnosis of banana allergy. Because of the variations in protein levels in banana fruit, in this study Mus a 5 was produced as a fusion protein with glutathione-S-transferase in Escherichia coli. The recombinant Mus a 5 was purified under native conditions by a combination of affinity, ion-exchange, and reversed phase chromatography. N-terminal sequence was confirmed by Edman degradation and 55 % of the primary structure was identified by mass fingerprint, while the secondary structure was assessed by circular dichroism spectroscopy. IgG reactivity of recombinant protein was shown in 2-D immunoblot with anti-Mus a 5 antibodies, while IgG and IgE binding to natural Mus a 5 was inhibited with the recombinant Mus a 5 in immunoblot inhibition test. IgE reactivity of recombinant Mus a 5 was shown in ELISA within a group of ten persons sensitized to banana fruit. Recombinant Mus a 5 is a novel reagent suitable for the component-resolved allergy diagnosis of banana allergy.",
publisher = "Humana Press Inc, Totowa",
journal = "Molecular Biotechnology",
title = "Molecular Characterization of Recombinant Mus a 5 Allergen from Banana Fruit",
volume = "56",
number = "6",
pages = "498-506",
doi = "10.1007/s12033-013-9719-8"
}
Mrkić, I., Abughren, M., Nikolić, J., Anđelković, U., Vassilopoulou, E., Sinaniotis, A., Petersen, A., Papadopoulos, N. G.,& Gavrović-Jankulović, M.. (2014). Molecular Characterization of Recombinant Mus a 5 Allergen from Banana Fruit. in Molecular Biotechnology
Humana Press Inc, Totowa., 56(6), 498-506.
https://doi.org/10.1007/s12033-013-9719-8
Mrkić I, Abughren M, Nikolić J, Anđelković U, Vassilopoulou E, Sinaniotis A, Petersen A, Papadopoulos NG, Gavrović-Jankulović M. Molecular Characterization of Recombinant Mus a 5 Allergen from Banana Fruit. in Molecular Biotechnology. 2014;56(6):498-506.
doi:10.1007/s12033-013-9719-8 .
Mrkić, Ivan, Abughren, Mohamed, Nikolić, Jasna, Anđelković, Uroš, Vassilopoulou, Emilia, Sinaniotis, Athanassios, Petersen, Arnd, Papadopoulos, Nikolaos G., Gavrović-Jankulović, Marija, "Molecular Characterization of Recombinant Mus a 5 Allergen from Banana Fruit" in Molecular Biotechnology, 56, no. 6 (2014):498-506,
https://doi.org/10.1007/s12033-013-9719-8 . .
2
2
3
2

Molecular and immunological characterization of Mus a 5 allergen from banana fruit

Aleksić, Ivana; Popović, Milica M.; Dimitrijevic, Rajna; Anđelković, Uroš; Vassilopoulou, Emilia; Sinaniotis, Athanassios; Atanasković-Marković, Marina; Lindner, Buko; Petersen, Arnd; Papadopoulos, Nikolaos G.; Gavrović-Jankulović, Marija

(Wiley-Blackwell, Malden, 2012)

TY  - JOUR
AU  - Aleksić, Ivana
AU  - Popović, Milica M.
AU  - Dimitrijevic, Rajna
AU  - Anđelković, Uroš
AU  - Vassilopoulou, Emilia
AU  - Sinaniotis, Athanassios
AU  - Atanasković-Marković, Marina
AU  - Lindner, Buko
AU  - Petersen, Arnd
AU  - Papadopoulos, Nikolaos G.
AU  - Gavrović-Jankulović, Marija
PY  - 2012
UR  - https://cherry.chem.bg.ac.rs/handle/123456789/1268
AB  - Scope Banana fruit has become an important cause of fruit allergy in the recent years. Among the five registered IUIS allergens, Mus a 1 and Mus a 2 have been characterized in detail. In this study, molecular characterization and evaluation of the allergenic properties of beta-1,3-glucanase from banana (Musa acuminata), denoted as Mus a 5, were performed Methods and results: The gene of Mus a 5 was cloned and sequenced. The obtained cDNA revealed a novel Mus a 5 isoform with an open reading frame encoding a protein of 340 amino acids comprising a putative signal peptide of 28 amino acid residues. By MALDI-TOF analysis Mus a 5 isolated from banana fruit revealed a molecular mass of 33 451 +/- 67 Da. Two Mus a 5 isoforms (pI 7.7 and 8.0) were detected by 2D immunoblot with an identical N-terminal sequence. By mass fingerprint, 76 and 83% of the primary structure was confirmed for the two mature Mus a 5 isoforms, respectively. IgE reactivity to Mus a 5 was found in 74% of patients sensitized to banana fruit. Upregulation of basophil activation markers CD63 and CD203c was achieved with Mus a 5 in a concentration-dependent manner. Conclusion: Mus a 5 is a functional allergen and a candidate for the component-resolved allergy diagnosis of banana allergy.
PB  - Wiley-Blackwell, Malden
T2  - Molecular Nutrition and Food Research
T1  - Molecular and immunological characterization of Mus a 5 allergen from banana fruit
VL  - 56
IS  - 3
SP  - 446
EP  - 453
DO  - 10.1002/mnfr.201100541
ER  - 
@article{
author = "Aleksić, Ivana and Popović, Milica M. and Dimitrijevic, Rajna and Anđelković, Uroš and Vassilopoulou, Emilia and Sinaniotis, Athanassios and Atanasković-Marković, Marina and Lindner, Buko and Petersen, Arnd and Papadopoulos, Nikolaos G. and Gavrović-Jankulović, Marija",
year = "2012",
abstract = "Scope Banana fruit has become an important cause of fruit allergy in the recent years. Among the five registered IUIS allergens, Mus a 1 and Mus a 2 have been characterized in detail. In this study, molecular characterization and evaluation of the allergenic properties of beta-1,3-glucanase from banana (Musa acuminata), denoted as Mus a 5, were performed Methods and results: The gene of Mus a 5 was cloned and sequenced. The obtained cDNA revealed a novel Mus a 5 isoform with an open reading frame encoding a protein of 340 amino acids comprising a putative signal peptide of 28 amino acid residues. By MALDI-TOF analysis Mus a 5 isolated from banana fruit revealed a molecular mass of 33 451 +/- 67 Da. Two Mus a 5 isoforms (pI 7.7 and 8.0) were detected by 2D immunoblot with an identical N-terminal sequence. By mass fingerprint, 76 and 83% of the primary structure was confirmed for the two mature Mus a 5 isoforms, respectively. IgE reactivity to Mus a 5 was found in 74% of patients sensitized to banana fruit. Upregulation of basophil activation markers CD63 and CD203c was achieved with Mus a 5 in a concentration-dependent manner. Conclusion: Mus a 5 is a functional allergen and a candidate for the component-resolved allergy diagnosis of banana allergy.",
publisher = "Wiley-Blackwell, Malden",
journal = "Molecular Nutrition and Food Research",
title = "Molecular and immunological characterization of Mus a 5 allergen from banana fruit",
volume = "56",
number = "3",
pages = "446-453",
doi = "10.1002/mnfr.201100541"
}
Aleksić, I., Popović, M. M., Dimitrijevic, R., Anđelković, U., Vassilopoulou, E., Sinaniotis, A., Atanasković-Marković, M., Lindner, B., Petersen, A., Papadopoulos, N. G.,& Gavrović-Jankulović, M.. (2012). Molecular and immunological characterization of Mus a 5 allergen from banana fruit. in Molecular Nutrition and Food Research
Wiley-Blackwell, Malden., 56(3), 446-453.
https://doi.org/10.1002/mnfr.201100541
Aleksić I, Popović MM, Dimitrijevic R, Anđelković U, Vassilopoulou E, Sinaniotis A, Atanasković-Marković M, Lindner B, Petersen A, Papadopoulos NG, Gavrović-Jankulović M. Molecular and immunological characterization of Mus a 5 allergen from banana fruit. in Molecular Nutrition and Food Research. 2012;56(3):446-453.
doi:10.1002/mnfr.201100541 .
Aleksić, Ivana, Popović, Milica M., Dimitrijevic, Rajna, Anđelković, Uroš, Vassilopoulou, Emilia, Sinaniotis, Athanassios, Atanasković-Marković, Marina, Lindner, Buko, Petersen, Arnd, Papadopoulos, Nikolaos G., Gavrović-Jankulović, Marija, "Molecular and immunological characterization of Mus a 5 allergen from banana fruit" in Molecular Nutrition and Food Research, 56, no. 3 (2012):446-453,
https://doi.org/10.1002/mnfr.201100541 . .
20
19
24
18