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Proteomics|November 3, 2006
Proteome analysis of maize pollen for allergy-relevant componentsArnd Petersen, Thomas Dresselhaus, Kay Grobe, et al.
European Journal of Biochemistry|May 3, 2002
Properties of group I allergens from grass pollen and their relation to cathepsin B, a member of the C1 family of cysteine proteinasesKay Grobe, Marco Pöppelmann, Wolf-Meinhard Becker, et al.
The Journal of Biological Chemistry|October 6, 2009
Heparan sulfate and transglutaminase activity are required for the formation of covalently cross-linked hedgehog oligomersTabea Dierker, Rita Dreier, Manuel Migone, et al.
The Journal of Biological Chemistry|January 30, 2009
Heparan sulfate-modulated, metalloprotease-mediated sonic hedgehog release from producing cellsTabea Dierker, Rita Dreier, Arnd Petersen, et al.
Biochemical and Biophysical Research Communications|June 21, 2014
Mutational analysis of the pumpkin (Cucurbita maxima) phloem exudate lectin, PP2 reveals Ser-104 is crucial for carbohydrate bindingKishore Babu Bobbili, Shyam Bandari, Kay Grobe, et al.
Trends in Cell Biology|November 28, 2006
A conserved mechanism of Hedgehog gradient formation by lipid modificationsIsabel Guerrero, Chin Chiang
Development (Cambridge, England)|November 17, 2006
Heparan sulfate biosynthetic gene Ndst1 is required for FGF signaling in early lens developmentYi Pan, Andrea Woodbury, Jeffrey D Esko, et al.
Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology|October 6, 2021
Hedgehog lipids: Promotors of alternative morphogen release and signaling?: Conflicting findings on lipidated Hedgehog transport and signaling can be explained by alternative regulated mechanisms to release the morphogenDominique Manikowski, Kristina Ehring, Fabian Gude, et al.
Plos Computational Biology|August 3, 2021
Improving the understanding of cytoneme-mediated morphogen gradients by in silico modelingAdrián Aguirre-Tamaral, Isabel Guerrero
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