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PHYLETIC RELATIONSHIP OF PROTEIN STRUCTURES BASED ON SPATIAL PREFERENCE OF RESIDUES
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作者 Chun Xu QU Lu Hun LAI +2 位作者 Xiao Jie XU Xue Mei YUAN You Qi TANG 《Chinese Chemical Letters》 SCIE CAS CSCD 1991年第11期867-870,共4页
A distance measure that infers to indicate the evolutionary relationship of protein structures has been developed based on spatial preference factors of residues. The spatial preference factor is a reflection of the e... A distance measure that infers to indicate the evolutionary relationship of protein structures has been developed based on spatial preference factors of residues. The spatial preference factor is a reflection of the environment of residues in tertiary structure. Compared with the phyletic relationships derived from sequence homologies and three-dimensional structures, we find that the two lines of evolution are similar in general. This approach is applied to a group of glins here. 展开更多
关键词 PHYLETIC RELATIONSHIP OF protein structureS BASED ON spatial PREFERENCE OF RESIDUES der
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Evolutionary Mode of Metallothioneins Inferred from Cd-MT Genes of Tetrahymena
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作者 WAN Ming-liang FENG Wei-song +1 位作者 MIAO Wei WONG Ming-hong 《Wuhan University Journal of Natural Sciences》 EI CAS 2005年第5期925-930,共6页
From Tetrahymena thermophila (strain BF5), the coding region of Cd-MT gene was cloned and sequenced. and identified as MTT1 isoform. A serial duplicate structure is discovered in its amino acid sequence, which separ... From Tetrahymena thermophila (strain BF5), the coding region of Cd-MT gene was cloned and sequenced. and identified as MTT1 isoform. A serial duplicate structure is discovered in its amino acid sequence, which separates the coding region into three parts (Part 1:7-61; Part 2:64-118; Part 3:122-162). The alignments among them and comparison with the corresponding parts of MT1 isoform suggest that MT1 and MTT1 isoforms both come from the same ancient gene that is homologous to Part 1, and Cd-MTs of Tetrahymena are aroused by such ancient gene duplication. The prediction of secondary structures and the analysis of the disulfide-bonding state of cysteine show that there are a lot of differences between MT1 and MTT1 isoforms, which maybe relate to their function mechanism. 展开更多
关键词 Tetrahymena tkermopkila METALLOTHIONEINS evolutionary mode gene duplication protein spatial structure metal-binding sites
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