4.7 Article

Revealing 2-dimethylhydrazino-2-alkyl alkynyl sphingosine derivatives as sphingosine kinase 2 inhibitors: Some hints on the structural basis for selective inhibition

期刊

BIOORGANIC CHEMISTRY
卷 121, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bioorg.2022.105668

关键词

Sphingolipids; Sphingosine kinase inhibitors; SphK1; SphK2; Synthesis; Docking; SphK inhibition activity; Cell viability assay

资金

  1. Ministerio de Economia y Competividad (Mineco), Spain [CTQ2014-58664-R, CTQ2017-89750-R]
  2. Ministerio de Ciencia e Innovacion, Spain [RTI2018-096429-B-I00, SAF2017-89714-R, PID2020-120336RB-I00]
  3. Generalitat Valenciana [FPU14/02790]
  4. European Regional Development Fund
  5. Ministerio de Educacion (predoctoral FPU fellowship) [PROMETEO/2019/032]
  6. URV

向作者/读者索取更多资源

This study describes the synthesis of new sphingosine derivatives and identifies hydrazino and alkynyl moieties as the best combination for selective SphK2 inhibition. Docking studies reveal that compounds 19a-b can bind to SphK2 through both polar and hydrophobic interactions, leading to their selective activity against SphK2.
Sphingosine kinase (SphK), which catalyzes the transfer of phosphate from ATP to sphingosine (Sph) generating sphingosine-1-phosphate (S1P) has emerged as therapeutic target since the discovery of connections of S1P with cancer progress. So far, most effort has focused on the development of inhibitors of SphK1, and selective inhibitors of SphK2 have been much less explored. Here, we describe the syntheses of new sphingosine derivatives bearing a tetrasubstituted carbon atom at C-2, dimethylhydrazino or azo moieties in the polar head, and alkane, alkene or alkyne moieties as linkers between the polar ahead and the fatty tail. In vitro inhibitory assays based on a time resolved fluorescence energy transfer (TR-FRET) have revealed the hydrazino and alkynyl moieties as the best combination for the design of selective SphK2 inhibitors (19a and 19b). Docking studies showed that compounds 19a-b have the optimal binding to SphK2 through the exploitation of polar but also hydrophobic interactions of their head group with the head of the enzyme binding pocket, while also producing full contact of the fatty tail with the hydrophobic pocket of the enzyme. By contrast, this elongation causes loss of contact surface with the shorter hydrophobic toe of the SphK1 isoform, thus accounting for the SphK2-biased selectivity of these compounds. Cell viability assays of the most promising candidates 19a-b have shown that 19a is not cytotoxic to human endothelial cells at 30 mu M.

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