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Conformational buffering underlies functional selection in intrinsically disordered protein regions

Authors :
0000-0003-4868-6593
0000-0002-9625-6275
0000-0002-4660-0306
0000-0003-2568-1378
0000-0002-4155-5729
0000-0001-5655-6559
0000-0003-0192-9906
González-Foutel, Nicolás S.
Glavina, Juliana
Borcherds, Wade M.
Safranchik, Matías
Barrera-Vilarmau, Susana
Sagar, Amin
Estaña, Alejandro
Barozet, Amelie
Garrone, Nicolás A.
Fernandez-Ballester, Gregorio
Blanes-Mira, Clara
Sánchez, Ignacio E.
de Prat-Gay, Gonzalo
Cortés, Juan
Bernadó, Pau
Pappu, Rohit V.
Holehouse, Alex S.
Daughdrill, Gary W.
Chemes, Lucía B.
0000-0003-4868-6593
0000-0002-9625-6275
0000-0002-4660-0306
0000-0003-2568-1378
0000-0002-4155-5729
0000-0001-5655-6559
0000-0003-0192-9906
González-Foutel, Nicolás S.
Glavina, Juliana
Borcherds, Wade M.
Safranchik, Matías
Barrera-Vilarmau, Susana
Sagar, Amin
Estaña, Alejandro
Barozet, Amelie
Garrone, Nicolás A.
Fernandez-Ballester, Gregorio
Blanes-Mira, Clara
Sánchez, Ignacio E.
de Prat-Gay, Gonzalo
Cortés, Juan
Bernadó, Pau
Pappu, Rohit V.
Holehouse, Alex S.
Daughdrill, Gary W.
Chemes, Lucía B.
Publication Year :
2022

Abstract

Many disordered proteins conserve essential functions in the face of extensive sequence variation, making it challenging to identify the mechanisms responsible for functional selection. Here we identify the molecular mechanism of functional selection for the disordered adenovirus early gene 1A (E1A) protein. E1A competes with host factors to bind the retinoblastoma (Rb) protein, subverting cell cycle regulation. We show that two binding motifs tethered by a hypervariable disordered linker drive picomolar affinity Rb binding and host factor displacement. Compensatory changes in amino acid sequence composition and sequence length lead to conservation of optimal tethering across a large family of E1A linkers. We refer to this compensatory mechanism as conformational buffering. We also detect coevolution of the motifs and linker, which can preserve or eliminate the tethering mechanism. Conformational buffering and motif-linker coevolution explain robust functional encoding within hypervariable disordered linkers and could underlie functional selection of many disordered protein regions.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1348916439
Document Type :
Electronic Resource