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Lancet (London, England)|July 10, 2002
Association between conformational mutations in neuroserpin and onset and severity of dementiaRichard L Davis, Antony E Shrimpton, Robin W Carrell, et al.Scientific Reports|November 23, 2019
Calcium signalling in mammalian cell lines expressing wild type and mutant human α1-AntitrypsinNancy T Malintan, Steven D Buckingham, David A Lomas, et al.The Journal of Biological Chemistry|June 2, 2016
Molecular Mechanism of Z α1-Antitrypsin DeficiencyXin Huang, Ying Zheng, Fei Zhang, et al.American Journal of Respiratory Cell and Molecular Biology|March 16, 2004
Inhibiting polymerization: new therapeutic strategies for Z alpha1-antitrypsin-related emphysemaHelen Parfrey, Timothy R Dafforn, Didier Belorgey, et al.Circulation|September 1, 2004
Homozygous deficiency of heparin cofactor II: relevance of P17 glutamate residue in serpins, relationship with conformational diseases, and role in thrombosisJavier Corral, Justo Aznar, Rocio Gonzalez-Conejero, et al.The Journal of Biological Chemistry|July 13, 2006
Inhibitory activity of the Drosophila melanogaster serpin Necrotic is dependent on lysine residues in the D-helixAndrew S Robertson, Didier Belorgey, David Gubb, et al.Biochemistry|August 27, 2003
Introduction of a mutation in the shutter region of antithrombin (Phe77 --> Leu) increases affinity for heparin and decreases thermal stabilityNoelene S Quinsey, Hazel L Fitton, Paul Coughlin, et al.The Biochemical Journal|February 21, 2014
Altered native stability is the dominant basis for susceptibility of α1-antitrypsin mutants to polymerizationJames A Irving, Imran Haq, Jennifer A Dickens, et al.Nature Communications|December 14, 2020
High-resolution ex vivo NMR spectroscopy of human Z α1-antitrypsinAlistair M Jagger, Christopher A Waudby, James A Irving, et al.Biochemistry|February 26, 2003
Nucleation of alpha 1-antichymotrypsin polymerizationDamian C Crowther, Louise C Serpell, Timothy R Dafforn, et al.Pageof 29