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Alternative splicing (AS) and gene duplication (GD) both are processes that diversify the protein repertoire. Recent examples have shown that sequence changes introduced by AS may be comparable to those introduced by GD. In addition, the two processes are inversely correlated at the genomic scale: large gene families are depleted in splice variants and vice versa. All together, these data strongly suggest that both phenomena result in interchangeability between their effects. Here, we tested the extent to which this applies with respect to various protein characteristics. The amounts of AS and GD per gene are anticorrelated even when accounting for different gene functions or degrees of sequence divergence. In contrast, the two processes appear to be independent in their influence on variation in mRNA expression. Further, we conducted a detailed comparison of the effect of sequence changes in both alternative splice variants and gene duplicates on protein structure, in particular the size, location, and types of sequence substitutions and insertions/deletions. We find that, in general, alternative splicing affects protein sequence and structure in a more drastic way than gene duplication and subsequent divergence. Our results reveal an interesting paradox between the anticorrelation of AS and GD at the genomic level, and their impact at the protein level, which shows little or no equivalence in terms of effects on protein sequence, structure, and function. We discuss possible explanations that relate to the order of appearance of AS and GD in a gene family, and to the selection pressure imposed by the environment.
Proteomics, Proteome, QH301-705.5, Àcids nucleics, DNA Mutational Analysis, Molecular Sequence Data, Structural genomics, 612, Proteòmica, Evolution, Molecular, Transcripció genètica, Sequence alignment, Human families, Gene Duplication, Computer Simulation, Biology (General), Base Sequence, Models, Genetic, Genetic transcription, Genetic Variation, Sequence Analysis, DNA, Nucleic acids, Alternative Splicing, Sequence motif analysis, Protein structure, Gene expression, Sequence databases, Alternative splicing, Research Article
Proteomics, Proteome, QH301-705.5, Àcids nucleics, DNA Mutational Analysis, Molecular Sequence Data, Structural genomics, 612, Proteòmica, Evolution, Molecular, Transcripció genètica, Sequence alignment, Human families, Gene Duplication, Computer Simulation, Biology (General), Base Sequence, Models, Genetic, Genetic transcription, Genetic Variation, Sequence Analysis, DNA, Nucleic acids, Alternative Splicing, Sequence motif analysis, Protein structure, Gene expression, Sequence databases, Alternative splicing, Research Article
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| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Top 10% | |
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