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Page 1
Comparative genomics of Listeria species.
Glaser P, Frangeul L, Buchrieser C, Rusniok C, Amend A, Baquero F, Berche P, Bloecker H, Brandt P, Chakraborty T, Charbit A, Chetouani F, Couvé E, de Daruvar A, Dehoux P, Domann E, Domínguez-Bernal G, Duchaud E, Durant L, Dussurget O, Entian KD, Fsihi H, García-del Portillo F, Garrido P, Gautier L, Goebel W, Gómez-López N, Hain T, Hauf J, Jackson D, Jones LM, Kaerst U, Kreft J, Kuhn M, Kunst F, Kurapkat G, Madueno E, Maitournam A, Vicente JM, Ng E, Nedjari H, Nordsiek G, Novella S, de Pablos B, Pérez-Diaz JC, Purcell R, Remmel B, Rose M, Schlueter T, Simoes N, Tierrez A, Vázquez-Boland JA, Voss H, Wehland J, Cossart P. Glaser P, et al. Science. 2001 Oct 26;294(5543):849-52. doi: 10.1126/science.1063447. Science. 2001. PMID: 11679669
Comparative proteome analysis of secretory proteins from pathogenic and nonpathogenic Listeria species.
Trost M, Wehmhöner D, Kärst U, Dieterich G, Wehland J, Jänsch L. Trost M, et al. Proteomics. 2005 Apr;5(6):1544-57. doi: 10.1002/pmic.200401024. Proteomics. 2005. PMID: 15838904
The previous original signal peptide (SP) prediction (Glaser et al., Science 2001, 294, 849-852) has been greatly improved by an in-depth analysis using seven different bioinformatic tools. ...
The previous original signal peptide (SP) prediction (Glaser et al., Science 2001, 294, 849-852) has been …