3wns Citations

Multiple binding modes of isothiocyanates that inhibit macrophage migration inhibitory factor.

Eur J Med Chem 93 501-10 (2015)
Related entries: 3wnr, 3wnt, 4osf

Cited: 13 times
EuropePMC logo PMID: 25743213

Abstract

Macrophage migration inhibitory factor (MIF) is a pleiotropic cytokine that has roles in the innate immune response, and also contributes to inflammatory disease. While the biological properties of MIF are closely linked to protein-protein interactions, MIF also has tautomerase activity. Inhibition of this activity interferes with the interaction of MIF with protein partners e.g. the CD74 receptor, and tautomerase inhibitors show promise in disease models including multiple sclerosis and colitis. Isothiocyanates inhibit MIF tautomerase activity via covalent modification of the N-terminal proline. We systematically explored variants of benzyl and phenethyl isothiocyanates, to define determinants of inhibition. In particular, substitution with hydroxyl, chloro, fluoro and trifluoro moieties at the para and meta positions were evaluated. In assays on treated cells and recombinant protein, the IC50 varied from 250 nM to >100 μM. X-ray crystal structures of selected complexes revealed that two binding modes are accessed by some compounds, perhaps owing to strain in short linkers between the isothiocyanate and aromatic ring. The variety of binding modes confirms the existence of two subsites for inhibitors and establishes a platform for the development of potent inhibitors of MIF that only need to target one of these subsites.

Articles - 3wns mentioned but not cited (2)

  1. Destabilization of macrophage migration inhibitory factor by 4-IPP reduces NF-κB/P-TEFb complex-mediated c-Myb transcription to suppress osteosarcoma tumourigenesis. Zheng L, Feng Z, Tao S, Gao J, Lin Y, Wei X, Zheng B, Huang B, Zheng Z, Zhang X, Liu J, Shan Z, Chen Y, Chen J, Zhao F. Clin Transl Med 12 e652 (2022)
  2. Molecular architecture and oligomerization of Candida glabrata Cdc13 underpin its telomeric DNA-binding and unfolding activity. Coloma J, Gonzalez-Rodriguez N, Balaguer FA, Gmurczyk K, Aicart-Ramos C, Nuero ÓM, Luque-Ortega JR, Calugaru K, Lue NF, Moreno-Herrero F, Llorca O. Nucleic Acids Res 51 668-686 (2023)


Reviews citing this publication (5)

  1. The Role of Isothiocyanates as Cancer Chemo-Preventive, Chemo-Therapeutic and Anti-Melanoma Agents. Mitsiogianni M, Koutsidis G, Mavroudis N, Trafalis DT, Botaitis S, Franco R, Zoumpourlis V, Amery T, Galanis A, Pappa A, Panayiotidis MI. Antioxidants (Basel) 8 E106 (2019)
  2. Brassica-Derived Plant Bioactives as Modulators of Chemopreventive and Inflammatory Signaling Pathways. Sturm C, Wagner AE. Int J Mol Sci 18 E1890 (2017)
  3. Post-translational regulation of macrophage migration inhibitory factor: Basis for functional fine-tuning. Schindler L, Dickerhof N, Hampton MB, Bernhagen J. Redox Biol 15 135-142 (2018)
  4. Prevention and treatment of cancers by immune modulating nutrients. Janakiram NB, Mohammed A, Madka V, Kumar G, Rao CV. Mol Nutr Food Res 60 1275-1294 (2016)
  5. Targeting Macrophage Migration Inhibitory Factor in Acute Pancreatitis and Pancreatic Cancer. Wen Y, Cai W, Yang J, Fu X, Putha L, Xia Q, Windsor JA, Phillips AR, Tyndall JDA, Du D, Liu T, Huang W. Front Pharmacol 12 638950 (2021)

Articles citing this publication (6)

  1. Using sulfuramidimidoyl fluorides that undergo sulfur(VI) fluoride exchange for inverse drug discovery. Brighty GJ, Botham RC, Li S, Nelson L, Mortenson DE, Li G, Morisseau C, Wang H, Hammock BD, Sharpless KB, Kelly JW. Nat Chem 12 906-913 (2020)
  2. Advances and Insights for Small Molecule Inhibition of Macrophage Migration Inhibitory Factor. Trivedi-Parmar V, Jorgensen WL. J Med Chem 61 8104-8119 (2018)
  3. Nanosecond Dynamics Regulate the MIF-Induced Activity of CD74. Pantouris G, Ho J, Shah D, Syed MA, Leng L, Bhandari V, Bucala R, Batista VS, Loria JP, Lolis EJ. Angew Chem Int Ed Engl 57 7116-7119 (2018)
  4. 7-Hydroxycoumarins Are Affinity-Based Fluorescent Probes for Competitive Binding Studies of Macrophage Migration Inhibitory Factor. Xiao Z, Chen D, Song S, van der Vlag R, van der Wouden PE, van Merkerk R, Cool RH, Hirsch AKH, Melgert BN, Quax WJ, Poelarends GJ, Dekker FJ. J Med Chem 63 11920-11933 (2020)
  5. The Fate of a Hapten - From the Skin to Modification of Macrophage Migration Inhibitory Factor (MIF) in Lymph Nodes. Karlsson I, Samuelsson K, Simonsson C, Stenfeldt AL, Nilsson U, Ilag LL, Jonsson C, Karlberg AT. Sci Rep 8 2895 (2018)
  6. Synthesis of stable isotope-labeled nasturlexins and potential precursors to probe biosynthetic pathways of cruciferous phytoalexins. Pedras MSC, To QH. J Labelled Comp Radiopharm 61 94-106 (2018)