6lvq Citations

Structural Insights into the Active Site Formation of DUSP22 in N-loop-containing Protein Tyrosine Phosphatases.

OpenAccess logo Int J Mol Sci 21 (2020)
Related entries: 6l1s, 6lmy, 6lot, 6lou, 7c8s

Cited: 4 times
EuropePMC logo PMID: 33053837

Abstract

Cysteine-based protein tyrosine phosphatases (Cys-based PTPs) perform dephosphorylation to regulate signaling pathways in cellular responses. The hydrogen bonding network in their active site plays an important conformational role and supports the phosphatase activity. Nearly half of dual-specificity phosphatases (DUSPs) use three conserved residues, including aspartate in the D-loop, serine in the P-loop, and asparagine in the N-loop, to form the hydrogen bonding network, the D-, P-, N-triloop interaction (DPN-triloop interaction). In this study, DUSP22 is used to investigate the importance of the DPN-triloop interaction in active site formation. Alanine mutations and somatic mutations of the conserved residues, D57, S93, and N128 substantially decrease catalytic efficiency (kcat/KM) by more than 102-fold. Structural studies by NMR and crystallography reveal that each residue can perturb the three loops and induce conformational changes, indicating that the hydrogen bonding network aligns the residues in the correct positions for substrate interaction and catalysis. Studying the DPN-triloop interaction reveals the mechanism maintaining phosphatase activity in N-loop-containing PTPs and provides a foundation for further investigation of active site formation in different members of this protein class.

Reviews - 6lvq mentioned but not cited (1)

Articles - 6lvq mentioned but not cited (1)

  1. Structural Insights into the Active Site Formation of DUSP22 in N-loop-containing Protein Tyrosine Phosphatases. Lai CH, Chang CC, Chuang HC, Tan TH, Lyu PC. Int J Mol Sci 21 E7515 (2020)


Reviews citing this publication (1)

  1. A Review of DUSP26: Structure, Regulation and Relevance in Human Disease. Thompson EM, Stoker AW. Int J Mol Sci 22 E776 (2021)

Articles citing this publication (1)

  1. Significant Loop Motions in the SsoPTP Protein Tyrosine Phosphatase Allow for Dual General Acid Functionality. Pinkston J, Jo J, Olsen KJ, Comer D, Glaittli CA, Loria JP, Johnson SJ, Hengge AC. Biochemistry 60 2888-2901 (2021)