» Articles » PMID: 20199796

Phosphorylation of Thymidylate Synthase from Various Sources by Human Protein Kinase CK2 and Its Catalytic Subunits

Overview
Journal Bioorg Chem
Publisher Elsevier
Specialties Biochemistry
Chemistry
Date 2010 Mar 5
PMID 20199796
Citations 10
Authors
Affiliations
Soon will be listed here.
Abstract

Thymidylate synthase (TS) was found to be a substrate for both catalytic subunits of human CK2, with phosphorylation by CK2alpha and CK2alpha' characterized by similar K(m) values, 4.6microM and 4.2microM, respectively, but different efficiencies, the apparent turnover number with CK2alpha being 10-fold higher. With both catalytic subunits, phosphorylation of human TS, like calmodulin and BID, was strongly inhibited in the presence of the regulatory subunit CK2beta, the holoenzyme being activated by polylysine. Phosphorylation of recombinant human, rat, mouse and Trichinella spiralis TSs proteins was compared, with the human enzyme being apparently a much better substrate than the others. Following hydrolysis and TLC, phosphoserine was detected in human and rat, and phosphotyrosine in T. spiralis, TS, used as substrates for CK2alpha. MALDI-TOF MS analysis led to identification of phosphorylated Ser(124) in human TS, within a sequence LGFS(124)TREEGD, atypical for a CK2 substrate recognition site. The phosphorylation site is located in a region considered important for the catalytic mechanism or regulation of human TS, corresponding to the loop 107-128. Following phosphorylation by CK2alpha, resulting in incorporation of 0.4mol of phosphate per mol of dimeric TS, human TS exhibits unaltered K(m) values for dUMP and N(5,10)-methylenetetrahydrofolate, but a 50% lower turnover number, pointing to a strong influence of Ser(124) phosphorylation on its catalytic efficiency.

Citing Articles

Phosphorylation of Thymidylate Synthase and Dihydrofolate Reductase in Cancer Cells and the Effect of CK2α Silencing.

Winska P, Sobiepanek A, Pawlak K, Staniszewska M, Ciesla J Int J Mol Sci. 2023; 24(3).

PMID: 36769342 PMC: 9917831. DOI: 10.3390/ijms24033023.


Dynamic allostery in substrate binding by human thymidylate synthase.

Bonin J, Sapienza P, Lee A Elife. 2022; 11.

PMID: 36200982 PMC: 9536839. DOI: 10.7554/eLife.79915.


Inhibition of Protein Kinase CK2 Affects Thymidylate Synthesis Cycle Enzyme Level and Distribution in Human Cancer Cells.

Winska P, Widlo L, Senkara E, Koronkiewicz M, Ciesla J, Krzysko A Front Mol Biosci. 2022; 9:847829.

PMID: 35281258 PMC: 8914513. DOI: 10.3389/fmolb.2022.847829.


Thymidylate synthase O-GlcNAcylation: a molecular mechanism of 5-FU sensitization in colorectal cancer.

Very N, Hardiville S, Decourcelle A, Thevenet J, Djouina M, Page A Oncogene. 2021; 41(5):745-756.

PMID: 34845374 DOI: 10.1038/s41388-021-02121-9.


Molecular Mechanism of Thymidylate Synthase Inhibition by N-Hydroxy-dCMP in View of Spectrophotometric and Crystallographic Studies.

Maj P, Jarmula A, Wilk P, Prokopowicz M, Rypniewski W, Zielinski Z Int J Mol Sci. 2021; 22(9).

PMID: 33946210 PMC: 8125507. DOI: 10.3390/ijms22094758.