Authors:
SCHNEIDER G
SJOLING S
WALLIN E
WREDE P
GLASER E
VONHEIJNE G
Citation: G. Schneider et al., FEATURE-EXTRACTION FROM ENDOPEPTIDASE CLEAVAGE SITES IN MITOCHONDRIALTARGETING PEPTIDES, Proteins, 30(1), 1998, pp. 49-60
Citation: G. Schneider et P. Wrede, ARTIFICIAL NEURAL NETWORKS FOR COMPUTER-BASED MOLECULAR DESIGN, Progress in Biophysics and Molecular Biology, 70(3), 1998, pp. 175-222
Authors:
SCHNEIDER G
SCHRODL W
WALLUKAT G
MULLER J
NISSEN E
RONSPECK W
WREDE P
KUNZE R
Citation: G. Schneider et al., PEPTIDE DESIGN BY ARTIFICIAL NEURAL NETWORKS AND COMPUTER-BASED EVOLUTIONARY SEARCH, Proceedings of the National Academy of Sciences of the United Statesof America, 95(21), 1998, pp. 12179-12184
Authors:
WREDE P
LANDT O
KLAGES S
FATEMI A
HAHN U
SCHNEIDER G
Citation: P. Wrede et al., PEPTIDE DESIGN AIDED BY NEURAL NETWORKS - BIOLOGICAL-ACTIVITY OF ARTIFICIAL SIGNAL PEPTIDASE-I CLEAVAGE SITES, Biochemistry, 37(11), 1998, pp. 3588-3593
Authors:
SCHUCHHARDT J
SCHNEIDER G
REICHELT J
SCHOMBURG D
WREDE P
Citation: J. Schuchhardt et al., LOCAL STRUCTURAL MOTIFS OF PROTEIN BACKBONES ARE CLASSIFIED BY SELF-ORGANIZING NEURAL NETWORKS, Protein engineering, 9(10), 1996, pp. 833-842
Citation: R. Lohmann et al., STRUCTURE OPTIMIZATION OF AN ARTIFICIAL NEURAL FILTER DETECTING MEMBRANE-SPANNING AMINO-ACID-SEQUENCES, Biopolymers, 38(1), 1996, pp. 13-29
Citation: G. Schneider et al., DEVELOPMENT OF SIMPLE FITNESS LANDSCAPES FOR PEPTIDES BY ARTIFICIAL NEURAL FILTER SYSTEMS, Biological cybernetics, 73(3), 1995, pp. 245-254
Citation: P. Wrede et al., ANALYSIS AND DESIGN OF AMINO-ACID-SEQUENCES BY NEURAL NETWORKS AND SIMULATED MOLECULAR EVOLUTION, Protein engineering, 8, 1995, pp. 10-10
Citation: G. Schneider et al., AMINO-ACID-SEQUENCE ANALYSIS AND DESIGN BY ARTIFICIAL NEURAL NETWORKSAND SIMULATED MOLECULAR EVOLUTION - AN EVALUATION, Endocytobiosis and cell research, 11(1), 1995, pp. 1-18
Citation: G. Schneider et al., PEPTIDE DESIGN IN MACHINA - DEVELOPMENT OF ARTIFICIAL MITOCHONDRIAL PROTEIN-PRECURSOR CLEAVAGE SITES BY SIMULATED MOLECULAR EVOLUTION, Biophysical journal, 68(2), 1995, pp. 434-447
Citation: R. Lohmann et al., A NEURAL-NETWORK MODEL FOR THE PREDICTION OF MEMBRANE-SPANNING AMINO-ACID-SEQUENCES, Protein science, 3(9), 1994, pp. 1597-1601
Citation: G. Schneider et al., ARTIFICIAL NEURAL NETWORKS AND SIMULATED MOLECULAR EVOLUTION ARE POTENTIAL TOOLS FOR SEQUENCE-ORIENTED PROTEIN DESIGN, Computer applications in the biosciences, 10(6), 1994, pp. 635-645
Citation: G. Schneider et al., DE-NOVO DESIGN OF PEPTIDES AND PROTEINS - MACHINE-GENERATED SEQUENCESBY THE PROSA PROGRAM, Computer applications in the biosciences, 10(1), 1994, pp. 75-77
Citation: G. Schneider et P. Wrede, THE RATIONAL DESIGN OF AMINO-ACID-SEQUENCES BY ARTIFICIAL NEURAL NETWORKS AND SIMULATED MOLECULAR EVOLUTION - DE-NOVO DESIGN OF AN IDEALIZED LEADER PEPTIDASE CLEAVAGE SITE, Biophysical journal, 66(2), 1994, pp. 335-344
Citation: G. Schneider et P. Wrede, PREDICTION OF THE SECONDARY STRUCTURE OF PROTEINS FROM THE AMINO-ACID-SEQUENCE WITH ARTIFICIAL NEURAL NETWORKS, Angewandte Chemie, International Edition in English, 32(8), 1993, pp. 1141-1143
Citation: G. Schneider et P. Wrede, DEVELOPMENT OF ARTIFICIAL NEURAL FILTERS FOR PATTERN-RECOGNITION IN PROTEIN SEQUENCES, Journal of molecular evolution, 36(6), 1993, pp. 586-595
Citation: G. Schneider et al., ANALYSIS OF CLEAVAGE-SITE PATTERNS IN PROTEIN-PRECURSOR SEQUENCES WITH A PERCEPTRON-TYPE NEURAL-NETWORK, Biochemical and biophysical research communications, 194(2), 1993, pp. 951-959