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1.
Adv Exp Med Biol ; 1441: 1057-1090, 2024.
Article in English | MEDLINE | ID: mdl-38884769

ABSTRACT

Arrhythmias account for over 300,000 annual deaths in the United States, and approximately half of all deaths are associated with heart disease. Mechanisms underlying arrhythmia risk are complex; however, work in humans and animal models over the past 25 years has identified a host of molecular pathways linked with both arrhythmia substrates and triggers. This chapter will focus on select arrhythmia pathways solved by linking human clinical and genetic data with animal models.


Subject(s)
Arrhythmias, Cardiac , Disease Models, Animal , Animals , Humans , Arrhythmias, Cardiac/genetics , Arrhythmias, Cardiac/physiopathology , Arrhythmias, Cardiac/metabolism , Signal Transduction/genetics
2.
J Pers Med ; 11(5)2021 May 12.
Article in English | MEDLINE | ID: mdl-34065787

ABSTRACT

Desmoplakin (DSP) is a large (~260 kDa) protein found in the desmosome, a subcellular complex that links the cytoskeleton of one cell to its neighbor. A mutation 'hot-spot' within the NH2-terminal third of the DSP protein (specifically, residues 299-515) is associated with both cardiomyopathies and skin defects. In select DSP variants, disease is linked specifically to the uncovering of a previously-occluded calpain target site (residues 447-451). Here, we partially stabilize these calpain-sensitive DSP clinical variants through the addition of a secondary single point mutation-tyrosine for leucine at amino acid position 518 (L518Y). Molecular dynamic (MD) simulations and enzymatic assays reveal that this stabilizing mutation partially blocks access to the calpain target site, resulting in restored DSP protein levels. This 'molecular band-aid' provides a novel way to maintain DSP protein levels, which may lead to new strategies for treating this subset of DSP-related disorders.

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