Alternative inclusion of exons increases the functional diversity of proteins. Among alternatively spliced exons, tissue-specific exons play a critical role in maintaining tissue identity. This raises the question of how tissue-specific protein-coding exons influence protein function. Here we investigate the structural, functional, interaction, and evolutionary properties of constitutive, tissue-specific, and other alternative exons in human. We find that tissue-specific protein segments often contain disordered regions, are enriched in posttranslational modification sites, and frequently embed conserved binding motifs. Furthermore, genes containing tissue-specific exons tend to occupy central positions in interaction networks and display d...
Alternative splicing contributes to both gene regulation and protein diversity. To discover broad re...
Alternative splicing can expand the diversity of proteomes. Homologous mutually exclusive exons (MXE...
Proteins are the basic building blocks and functional units in all living organisms. Moreover, diffe...
Intrinsically disordered regions have been associated with various cellular processes and are implic...
<div><p>Intrinsically disordered regions have been associated with various cellular processes and ar...
Recent comparative genomic analysis of alternative splicing has shown that protein modularity is an ...
The role of alternative splicing is one of the great unanswered questions in cellular biology. There...
[[abstract]]Alternative splicing is known to significantly affect exon-level protein evolutionary ra...
Alternative splicing is a vital process for regulating gene expression and promoting proteomic diver...
Construction and analyses of tissue specific networks is crucial to unveil the function and organiza...
<div><p>Alternative splicing is a vital process for regulating gene expression and promoting proteom...
<div><p>Construction and analyses of tissue specific networks is crucial to unveil the function and ...
Abstract Background Alternative splicing (AS) functio...
Construction and analyses of tissue specific networks is crucial to unveil the function and organiza...
Alternative splicing contributes to both gene regulation and protein diversity. To discover broad re...
Alternative splicing contributes to both gene regulation and protein diversity. To discover broad re...
Alternative splicing can expand the diversity of proteomes. Homologous mutually exclusive exons (MXE...
Proteins are the basic building blocks and functional units in all living organisms. Moreover, diffe...
Intrinsically disordered regions have been associated with various cellular processes and are implic...
<div><p>Intrinsically disordered regions have been associated with various cellular processes and ar...
Recent comparative genomic analysis of alternative splicing has shown that protein modularity is an ...
The role of alternative splicing is one of the great unanswered questions in cellular biology. There...
[[abstract]]Alternative splicing is known to significantly affect exon-level protein evolutionary ra...
Alternative splicing is a vital process for regulating gene expression and promoting proteomic diver...
Construction and analyses of tissue specific networks is crucial to unveil the function and organiza...
<div><p>Alternative splicing is a vital process for regulating gene expression and promoting proteom...
<div><p>Construction and analyses of tissue specific networks is crucial to unveil the function and ...
Abstract Background Alternative splicing (AS) functio...
Construction and analyses of tissue specific networks is crucial to unveil the function and organiza...
Alternative splicing contributes to both gene regulation and protein diversity. To discover broad re...
Alternative splicing contributes to both gene regulation and protein diversity. To discover broad re...
Alternative splicing can expand the diversity of proteomes. Homologous mutually exclusive exons (MXE...
Proteins are the basic building blocks and functional units in all living organisms. Moreover, diffe...