4.5 Article

Molecular modeling and LC-MS-based metabolomics of a glutamine-valproic acid (Gln-VPA) derivative on HeLa cells

Journal

MOLECULAR DIVERSITY
Volume 25, Issue 2, Pages 1077-1089

Publisher

SPRINGER
DOI: 10.1007/s11030-020-10089-z

Keywords

Glutaminase; Gln-VPA; Dual-target inhibitor; Anti-proliferative LC-MS-based metabolomic

Funding

  1. Instituto Politecnico Nacional [SIP:20170539, 20161454, 20171022, 20171881]
  2. CONACYT [CB-254600, CB-241339, SEP-CONACYT-ANUIES-ECOS Francia: 296637]

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The study evaluated the hybrid compound Gln-VPA using various methods, showing its anti-proliferative effects and inhibition of glutaminase activity in HeLa cells. LC-MS metabolomics studies indicated that Gln-VPA and DON have different biological targets in the cell death mechanism.
Glutaminase plays an important role in carcinogenesis and cancer cell growth. This biological target is interesting against cancer cells. Therefore, in this work, in silico [docking and molecular dynamics (MD) simulations] and in vitro methods (antiproliferative and LC-MS metabolomics) were employed to assay a hybrid compound derived from glutamine and valproic acid (Gln-VPA), which was compared with 6-diazo-5-oxo-l-norleucine (DON, a glutaminase inhibitor) and VPA (contained in Gln-VPA structure). Docking results from some snapshots retrieved from MD simulations show that glutaminase recognized Gln-VPA and DON. Additionally, Gln-VPA showed antiproliferative effects in HeLa cells and inhibited glutaminase activity. Finally, the LC-MS-based metabolomics studies on HeLa cells treated with either Gln-VPA (IC60 = 8 mM) or DON (IC50 = 3.5 mM) show different metabolomics behaviors, suggesting that they modulate different biological targets of the cell death mechanism. In conclusion, Gln-VPA is capable of interfering with more than one pharmacological target of cancer, making it an interesting drug that can be used to avoid multitherapy of classic anticancer drugs. [GRAPHICS] .

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