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A helical lock and key model of polyproline II conformation with SH3.
Meirson, Tomer; Bomze, David; Kahlon, Liron; Gil-Henn, Hava; Samson, Abraham O.
Afiliação
  • Meirson T; Drug Discovery Laboratory, The Azrieli Faculty of Medicine, Safed 1589, Israel.
  • Bomze D; Laboratory of Cell Migration and Invasion, The Azrieli Faculty of Medicine, Bar-Ilan University, Safed 1589, Israel.
  • Kahlon L; Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv 39040, Israel.
  • Gil-Henn H; The Azrieli Faculty of Medicine, Bar-Ilan University, Safed 1589, Israel.
  • Samson AO; Laboratory of Cell Migration and Invasion, The Azrieli Faculty of Medicine, Bar-Ilan University, Safed 1589, Israel.
Bioinformatics ; 36(1): 154-159, 2020 01 01.
Article em En | MEDLINE | ID: mdl-31250908
MOTIVATION: More than half of the human proteome contains the proline-rich motif, PxxP. This motif has a high propensity for adopting a left-handed polyproline II (PPII) helix and can potentially bind SH3 domains. SH3 domains are generally grouped into two classes, based on whether the PPII binds in a positive (N-to-C terminal) or negative (C-to-N terminal) orientation. Since the discovery of this structural motif, over six decades ago, a systematic understanding of its binding remains poor and the consensus amino acid sequence that binds SH3 domains is still ill defined. RESULTS: Here, we show that the PPII interaction with SH3 domains is governed by the helix backbone and its prolines, and their rotation angle around the PPII helical axis. Based on a geometric analysis of 131 experimentally solved SH3 domains in complex with PPIIs, we observed a rotary translation along the helical screw axis, and separated them by 120° into three categories we name α (0-120°), ß (120-240°) and γ (240-360°). Furthermore, we found that PPII helices are distinguished by a shifting PxxP motif preceded by positively charged residues which act as a structural reading frame and dictates the organization of SH3 domains; however, there is no one single consensus motif for all classified PPIIs. Our results demonstrate a remarkable apparatus of a lock with a rotating and translating key with no known equivalent machinery in molecular biology. We anticipate our model to be a starting point for deciphering the PPII code, which can unlock an exponential growth in our understanding of the relationship between protein structure and function. AVAILABILITY AND IMPLEMENTATION: We have implemented the proposed methods in the R software environment and in an R package freely available at https://github.com/Grantlab/bio3d. SUPPLEMENTARY INFORMATION: Supplementary data are available at Bioinformatics online.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Peptídeos / Modelos Moleculares / Domínios de Homologia de src Limite: Humans Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Peptídeos / Modelos Moleculares / Domínios de Homologia de src Limite: Humans Idioma: En Ano de publicação: 2020 Tipo de documento: Article