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Application of genetic semihomology algorithm to theoretical studies on various protein families.
Author(s) -
Jacek Leluk,
Beata HanusLorenz,
Aleksander F. Sikorski
Publication year - 2001
Publication title -
acta biochimica polonica
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.452
H-Index - 78
eISSN - 1734-154X
pISSN - 0001-527X
DOI - 10.18388/abp.2001_5109
Subject(s) - sequence (biology) , homology (biology) , genetics , homologous chromosome , amino acid , protein superfamily , algorithm , relevance (law) , sequence alignment , computational biology , biology , peptide sequence , computer science , gene , political science , law
Several protein families of different nature were studied for genetic relationship, correct alignment at non-homologous fragments, optimal sequence consensus construction, and confirmation of their actual relevance. A comparison of the genetic semihomology approach with statistical approaches indicates a high accuracy and cognition significance of the former. This is particularly pronounced in the study of related proteins that show a low degree of homology. The sequence multiple alignments were verified and corrected with respect to the questionable, non-homologous fragments. The verified alignments were the basis for consensus sequence formation. The frequency of six-codon amino acids occurrence versus position variability was studied and their possible role in amino acid mutational exchange at variable positions is discussed.

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