Discriminating between competing models for the allosteric regulation of oncogenic phosphatase SHP2 by characterizing its active state.
Comput Struct Biotechnol J
; 19: 6125-6139, 2021.
Article
in En
| MEDLINE
| ID: mdl-34900129
The Src-homology 2 domain containing phosphatase 2 (SHP2) plays a critical role in crucial signaling pathways and is involved in oncogenesis and in developmental disorders. Its structure includes two SH2 domains (N-SH2 and C-SH2), and a protein tyrosine phosphatase (PTP) domain. Under basal conditions, SHP2 is auto-inhibited, with the N-SH2 domain blocking the PTP active site. Activation involves a rearrangement of the domains that makes the catalytic site accessible, coupled to the association between the SH2 domains and cognate proteins containing phosphotyrosines. Several aspects of this transition are debated and competing mechanistic models have been proposed. A crystallographic structure of SHP2 in an active state has been reported (PDB code 6crf), but several lines of evidence suggests that it is not fully representative of the conformations populated in solution. To clarify the structural rearrangements involved in SHP2 activation, enhanced sampling simulations of the autoinhibited and active states have been performed, for wild type SHP2 and its pathogenic E76K variant. Our results demonstrate that the crystallographic conformation of the active state is unstable in solution, and multiple interdomain arrangements are populated, thus allowing association to bisphosphorylated sequences. Contrary to a recent proposal, activation is coupled to the conformational changes of the N-SH2 binding site, which is significantly more accessible in the active sate, rather than to the structure of the central ß-sheet of the domain. In this coupling, a previously undescribed role for the N-SH2 BG loop emerged.
BTLA, B and T lymphocyte attenuator; CTLA-4, cytotoxic T lymphocyte-associated antigen 4; FRET, Förster resonance energy transfer; Inter-domain dynamics; JMML, juvenile myelomonocytic leukemia; MD, molecular dynamics; NS, Noonan syndrome; NSML, Noonan syndrome with multiple lentigines; PD-1, programmed cell death protein 1; PDB, protein data bank; PMF, potential of mean force; PTP, protein tyrosine phosphatase; Protein flexibility; REMD, replica exchange molecular dynamics; RMSD, root mean square deviation; RMSF, root mean square fluctuation; RTK, receptor tyrosine kinase; Replica exchange molecular dynamics simulations; SASA, solvent accessible surface area; SAXS, small angle X-ray scattering; SH2, Src homology 2; SHP2 regulatory mechanism; SHP2, Src homology 2 domain-containing phosphatase 2; SIRPalpha, signal regulatory protein alpha; pY, phosphorylated tyrosine
Full text:
1
Collection:
01-internacional
Database:
MEDLINE
Type of study:
Prognostic_studies
Language:
En
Journal:
Comput Struct Biotechnol J
Year:
2021
Document type:
Article
Affiliation country:
Italia
Country of publication:
Países Bajos