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pubmed-article:17565234pubmed:abstractTextThe hydrophobicity pattern distribution in the Aalpha-, Bbeta- and gamma-chains of human fibrinogen has been studied by a nonlinear method, recurrence quantification analysis, in the wild type and in a number of naturally occurring or simulated mutants. The aim was to find a structural basis for distinguishing between silent and pathological mutants. We were successful in the case of mutations on the Aalpha-chain, thanks to the peculiar features of this chain as compared to the other two. Relevant findings concerning the point mutants of the Aalpha-chain are the following: (a) the recurrence quantification analysis-based classification of such mutants is in good agreement with the clinical classification, and (b) the location of the mutated residue on the sequence plays a more relevant role than its hydrophobic features. Artificial point mutants in the terminal zone (600-866 residues) of the extended isoform of the Aalpha-chain cluster together with the natural hemorrhagic mutants of the first (1-207) residues.lld:pubmed
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pubmed-article:17565234pubmed:volume35lld:pubmed
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pubmed-article:17565234pubmed:pagination417-27lld:pubmed
pubmed-article:17565234pubmed:dateRevised2010-11-18lld:pubmed
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pubmed-article:17565234pubmed:articleTitleSimulated point mutations in the Aalpha-chain of human fibrinogen support a role of the alphaC domain in the stabilization of fibrin gel.lld:pubmed
pubmed-article:17565234pubmed:affiliationDepartment of Human Physiology and Pharmacology Vittorio Erspamer, University of Rome, La Sapienza, Rome, Italy.lld:pubmed
pubmed-article:17565234pubmed:publicationTypeJournal Articlelld:pubmed
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