Literature DB >> 31219644

The role of protein complexes in human genetic disease.

L Therese Bergendahl1, Lukas Gerasimavicius1, Jamilla Miles1, Lewis Macdonald1, Jonathan N Wells2, Julie P I Welburn3, Joseph A Marsh1.   

Abstract

Many human genetic disorders are caused by mutations in protein-coding regions of DNA. Taking protein structure into account has therefore provided key insight into the molecular mechanisms underlying human genetic disease. Although most studies have focused on the intramolecular effects of mutations, the critical role of the assembly of proteins into complexes is being increasingly recognized. Here, we review multiple ways in which consideration of protein complexes can help us to understand and explain the effects of pathogenic mutations. First, we discuss disorders caused by mutations that perturb intersubunit interactions in homomeric and heteromeric complexes. Second, we address how protein complex assembly can facilitate a dominant-negative mechanism, whereby mutated subunits can disrupt the activity of wild-type protein. Third, we show how mutations that change protein expression levels can lead to damaging stoichiometric imbalances. Finally, we review how mutations affecting different subunits of the same heteromeric complex often cause similar diseases, whereas mutations in different interfaces of the same subunit can cause distinct phenotypes.
© 2019 The Protein Society.

Entities:  

Keywords:  Mendelian disorders; disease mutations; dominant-negative effect; haploinsufficiency; loss-of-function mutation; missense variants; pathogenic mutations; protein complex assembly; quaternary structure; stoichiometric imbalance

Mesh:

Substances:

Year:  2019        PMID: 31219644      PMCID: PMC6635777          DOI: 10.1002/pro.3667

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


  108 in total

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