Human protein tyrosine phosphatase non-receptor type 4 (PTPN4) has been shown to prevent cell death. The active form of human PTPN4 consists of two globular domains, a PDZ (PSD-95/Dlg/ZO-1) domain and a phosphatase domain, tethered by a fexible linker. Targeting its PDZ domain abrogates this protection and triggers apoptosis. We previously demonstrated that the PDZ domain inhibits the phosphatase activity of PTPN4 and that the mere binding of a PDZ ligand is sufcient to release the catalytic inhibition. We demonstrate here that the linker connecting the PDZ domain and the phosphatase domain is involved in the regulation of the phosphatase activity in both PDZ-related inhibition and PDZ ligand-related activation events. We combined bioinformatics and kinetic studies to decipher the role of the linker in the PTPN4 activity. By comparing orthologous sequences, we identifed a conserved patch of hydrophobic residues in the linker. We showed that mutations in this patch afect the regulation of the PTPN4 bidomain indicating that the PDZ-PDZ ligand regulation of PTPN4 is a linker-mediated mechanism. However, the mutations do not alter the binding of the PDZ ligand. This study strengthens the notion that inter-domain linker can be of functional importance in enzyme regulation of large multi-domain proteins.

Regulation of the human phosphatase ptpn4 by the inter-domain linker connecting the pdz and the phosphatase domains / Caillet-saguy, Célia; Toto, Angelo; Guerois, Raphael; Maisonneuve, Pierre; DI SILVIO, Eva; Sawyer, Kristi; Gianni, Stefano; Wolff, Nicolas. - In: SCIENTIFIC REPORTS. - ISSN 2045-2322. - (2017). [10.1038/s41598-017-08193-6]

Regulation of the human phosphatase ptpn4 by the inter-domain linker connecting the pdz and the phosphatase domains

Angelo Toto;Eva Di Silvio;Stefano Gianni
;
2017

Abstract

Human protein tyrosine phosphatase non-receptor type 4 (PTPN4) has been shown to prevent cell death. The active form of human PTPN4 consists of two globular domains, a PDZ (PSD-95/Dlg/ZO-1) domain and a phosphatase domain, tethered by a fexible linker. Targeting its PDZ domain abrogates this protection and triggers apoptosis. We previously demonstrated that the PDZ domain inhibits the phosphatase activity of PTPN4 and that the mere binding of a PDZ ligand is sufcient to release the catalytic inhibition. We demonstrate here that the linker connecting the PDZ domain and the phosphatase domain is involved in the regulation of the phosphatase activity in both PDZ-related inhibition and PDZ ligand-related activation events. We combined bioinformatics and kinetic studies to decipher the role of the linker in the PTPN4 activity. By comparing orthologous sequences, we identifed a conserved patch of hydrophobic residues in the linker. We showed that mutations in this patch afect the regulation of the PTPN4 bidomain indicating that the PDZ-PDZ ligand regulation of PTPN4 is a linker-mediated mechanism. However, the mutations do not alter the binding of the PDZ ligand. This study strengthens the notion that inter-domain linker can be of functional importance in enzyme regulation of large multi-domain proteins.
2017
PDZ domain; phosphatase activity; hydrophobic residues
01 Pubblicazione su rivista::01a Articolo in rivista
Regulation of the human phosphatase ptpn4 by the inter-domain linker connecting the pdz and the phosphatase domains / Caillet-saguy, Célia; Toto, Angelo; Guerois, Raphael; Maisonneuve, Pierre; DI SILVIO, Eva; Sawyer, Kristi; Gianni, Stefano; Wolff, Nicolas. - In: SCIENTIFIC REPORTS. - ISSN 2045-2322. - (2017). [10.1038/s41598-017-08193-6]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1014994
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