Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Max Peter, Bartetzko"'
Autor:
Arun Naini, Max Peter Bartetzko, Someswara Rao Sanapala, Felix Broecker, Victoria Wirtz, Marilda P. Lisboa, Sharavathi G. Parameswarappa, Daniel Knopp, Jessica Przygodda, Matthias Hakelberg, Rosalind Pan, Axay Patel, Laurent Chorro, Arthur Illenberger, Christopher Ponce, Srinivas Kodali, Jacqueline Lypowy, Annaliesa S. Anderson, Robert G. K. Donald, Arne von Bonin, Claney L. Pereira
Publikováno v:
JACS Au. 2:2135-2151
Autor:
Arun, Naini, Max Peter, Bartetzko, Someswara Rao, Sanapala, Felix, Broecker, Victoria, Wirtz, Marilda P, Lisboa, Sharavathi G, Parameswarappa, Daniel, Knopp, Jessica, Przygodda, Matthias, Hakelberg, Rosalind, Pan, Axay, Patel, Laurent, Chorro, Arthur, Illenberger, Christopher, Ponce, Srinivas, Kodali, Jacqueline, Lypowy, Annaliesa S, Anderson, Robert G K, Donald, Arne, von Bonin, Claney L, Pereira
Publikováno v:
JACS Au. 2(9)
Extraintestinal pathogenic
A Glycan Array‐Based Assay for the Identification and Characterization of Plant Glycosyltransferases
Autor:
Max Peter Bartetzko, Michael G. Hahn, Digantkumar Chapla, Colin Ruprecht, Peter J. Smith, Hyunil Oh, Anna Lakhina, Maria J. Soto, Daniel Varón Silva, Mads Hartvig Clausen, Jeong-Yeh Yang, Deborah Senf, Fabian Pfrengle, Kelley W. Moremen, Breeanna R. Urbanowicz
Publikováno v:
Angewandte Chemie (International Ed. in English)
Ruprecht, C, Bartetzko, M P, Senf, D, Lakhina, A, Smith, P J, Soto, M J, Oh, H, Yang, J-Y, Chapla, D, Silva, D V, Clausen, M H, Hahn, M G, Moremen, K W, Urbanowicz, B R & Pfrengle, F 2020, ' A Glycan Array-Based Assay for the Identification and Characterization of Plant Glycosyltransferases ', Angewandte Chemie, vol. 132, pp. 12593-1259 . https://doi.org/10.1002/ange.202003105
Angewandte Chemie International Edition
Angewandte Chemie
Ruprecht, C, Bartetzko, M P, Senf, D, Lakhina, A, Smith, P J, Soto, M J, Oh, H, Yang, J-Y, Chapla, D, Silva, D V, Clausen, M H, Hahn, M G, Moremen, K W, Urbanowicz, B R & Pfrengle, F 2020, ' A Glycan Array-Based Assay for the Identification and Characterization of Plant Glycosyltransferases ', Angewandte Chemie International Edition, vol. 59, no. 30, pp. 12493–12498 . https://doi.org/10.1002/anie.202003105
Ruprecht, C, Bartetzko, M P, Senf, D, Lakhina, A, Smith, P J, Soto, M J, Oh, H, Yang, J-Y, Chapla, D, Silva, D V, Clausen, M H, Hahn, M G, Moremen, K W, Urbanowicz, B R & Pfrengle, F 2020, ' A Glycan Array-Based Assay for the Identification and Characterization of Plant Glycosyltransferases ', Angewandte Chemie, vol. 132, pp. 12593-1259 . https://doi.org/10.1002/ange.202003105
Angewandte Chemie International Edition
Angewandte Chemie
Ruprecht, C, Bartetzko, M P, Senf, D, Lakhina, A, Smith, P J, Soto, M J, Oh, H, Yang, J-Y, Chapla, D, Silva, D V, Clausen, M H, Hahn, M G, Moremen, K W, Urbanowicz, B R & Pfrengle, F 2020, ' A Glycan Array-Based Assay for the Identification and Characterization of Plant Glycosyltransferases ', Angewandte Chemie International Edition, vol. 59, no. 30, pp. 12493–12498 . https://doi.org/10.1002/anie.202003105
Growing plants with modified cell wall compositions is a promising strategy to improve resistance to pathogens, increase biomass digestibility, and tune other important properties. In order to alter biomass architecture, a detailed knowledge of cell
Autor:
Deborah Senf, J. Paul Knox, Fabian Pfrengle, Michael G. Hahn, Colin Ruprecht, Mathias Christian Franch Andersen, Mads Hartvig Clausen, Pietro Dallabernadina, Max Peter Bartetzko, Irene Boos, Toshihisa Kotake
Publikováno v:
Plant Physiology
Ruprecht, C, Bartetzko, M P, Senf, D, Dallabernardina, P, Boos, I, Andersen, M C F, Kotake, T, Knox, J P, Hahn, M G, Clausen, M H & Pfrengle, F 2017, ' A synthetic glycan microarray enables epitope mapping of plant cell wall glycan-directed antibodies ', Plant Physiology, vol. 175, no. 3, pp. 1094-1104 . https://doi.org/10.1104/pp.17.00737
Ruprecht, C, Bartetzko, M P, Senf, D, Dallabernardina, P, Boos, I, Andersen, M C F, Kotake, T, Knox, J P, Hahn, M G, Clausen, M H & Pfrengle, F 2017, ' A synthetic glycan microarray enables epitope mapping of plant cell wall glycan-directed antibodies ', Plant Physiology, vol. 175, no. 3, pp. 1094-1104 . https://doi.org/10.1104/pp.17.00737
In the last three decades, more than 200 monoclonal antibodies have been raised against most classes of plant cell wall polysaccharides by different laboratories world-wide. These antibodies are widely used to identify differences in plant cell wall
Publikováno v:
The Journal of Organic Chemistry
Pectin is a structurally complex plant polysaccharide with many industrial applications in food products. The structural elucidation of pectin is aided by digestion assays with glycosyl hydrolases. We report the automated glycan assembly of oligosacc
Autor:
Fabian Pfrengle, Max Peter Bartetzko
Publikováno v:
Chembiochem : a European journal of chemical biology. 20(7)
The plant cell wall provides the richest available resource of fermentable carbohydrates and biobased materials. The main component of plant cell walls is cellulose, which is the most abundant biomolecule on earth. Apart from cellulose, which is cons
Autor:
André Horatscheck, Vera Martos, Peter Schmieder, Dieter Lentz, Max Peter Bartetzko, Ulrike Uhrig, Han Sun, Marc Nazaré
Publikováno v:
Angewandte Chemie (International ed. in English). 56(23)
We dissected halogen–aryl π interactions experimentally using a bicyclic N-arylimide based molecular torsion balances system, which is based on the influence of the non-bonded interaction on the equilibria between folded and unfolded states. Throu
Autor:
Fabian Pfrengle, Frank Schuhmacher, Peter H. Seeberger, Pietro Dallabernardina, Michael Wilsdorf, Deborah Schmidt, Max Peter Bartetzko
Publikováno v:
Europe PubMed Central
Chemical Communications
Chemical Communications
We report a traceless photocleavable linker for the automated glycan assembly of carbohydrates with free reducing ends. The reductive-labile functionality in the linker tolerates all commonly used reagents and protocols for automated glycan assembly,