Artículo
How natural sequence variation modulates protein folding dynamics
Fecha de publicación:
12/2024
Editorial:
Cornell University
Revista:
arXiv
ISSN:
2331-8422
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Natural protein sequences serve as a natural record of the evolutionary constraints that shape their functional structures. We show that it is possible to use sequence information to go beyond predicting native structures and global stability to infer the folding dynamics of globular proteins. The one- and two-body evolutionary energy fields at the amino-acid level are mapped to a coarse-grained description of folding, where proteins are divided into contiguous folding elements, commonly referred to as foldons. For 15 diverse protein families, we calculated the folding dynamics of hundreds of proteins by simulating an Ising chain of foldons, with their energetics determined by the amino acid sequences. We show that protein topology imposes limits on the variability of folding cooperativity within a family. While most beta and alpha/beta structures exhibit only a few possible mechanisms despite high sequence diversity, alpha topologies allow for diverse folding scenarios among family members. We show that both the stability and cooperativity changes induced by mutations can be computed directly using sequence-based evolutionary models.
Palabras clave:
EVOLUTION
,
FOLDING MECHANISM
,
COOPERATIVITY
,
FOLDON
Archivos asociados
Licencia
Identificadores
Colecciones
Articulos(IQUIBICEN)
Articulos de INSTITUTO DE QUIMICA BIOLOGICA DE LA FACULTAD DE CS. EXACTAS Y NATURALES
Articulos de INSTITUTO DE QUIMICA BIOLOGICA DE LA FACULTAD DE CS. EXACTAS Y NATURALES
Citación
Galpern, Ezequiel Alejandro; Roman, Ernesto Andres; Ferreiro, Diego; How natural sequence variation modulates protein folding dynamics; Cornell University; arXiv; 12-2024; 1-33
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