1. Academic Validation
  2. Identification of flavonolignans from Silybum marianum seeds as allosteric protein tyrosine phosphatase 1B inhibitors

Identification of flavonolignans from Silybum marianum seeds as allosteric protein tyrosine phosphatase 1B inhibitors

  • J Enzyme Inhib Med Chem. 2018 Dec;33(1):1283-1291. doi: 10.1080/14756366.2018.1497020.
Ningbo Qin 1 2 Tatsunori Sasaki 3 Wei Li 1 3 Jian Wang 1 4 Xiangyu Zhang 1 4 Dahong Li 1 2 Zhanlin Li 1 2 Maosheng Cheng 1 4 Huiming Hua 1 2 Kazuo Koike 3
Affiliations

Affiliations

  • 1 a Key Laboratory of Structure-Based Drug Design & Discovery, Ministry of Education , Shenyang Pharmaceutical University , Shenyang , Liaoning , PR China.
  • 2 b School of Traditional Chinese Materia Medica , Shenyang Pharmaceutical University , Shenyang , Liaoning PR China.
  • 3 c Faculty of Pharmaceutical Sciences , Toho University , Funabashi , Japan.
  • 4 d School of Pharmaceutical Engineering , Shenyang Pharmaceutical University , Shenyang , Liaoning , PR China.
Abstract

Protein tyrosine Phosphatase 1B (PTP1B) is an attractive molecular target for anti-diabetes, anti-obesity, and anti-cancer drug development. From the seeds of Silybum marianum, nine flavonolignans, namely, silybins A, B (1, 2), isosilybins A, B (3, 4), silychristins A, B (5, 6), isosilychristin A (7), dehydrosilychristin A (8), and silydianin (11) were identified as a novel class of natural PTP1B inhibitors (IC50 1.3 7-23.87 µM). Analysis of structure-activity relationship suggested that the absolute configurations at C-7" and C-8" greatly affected the PTP1B inhibitory activity. Compounds 1-5 were demonstrated to be non-competitive inhibitors of PTP1B based on kinetic analyses. Molecular docking simulations resulted that 1-5 docked into the allosteric site, including α3, α6, and α7 helix of PTP1B. At a concentration inhibiting PTP1B completely, compounds 1-5 moderately inhibited VHR and SHP-2, and weakly inhibited TCPTP and SHP-1. These results suggested the potentiality of these PTP1B inhibitors as lead compounds for further drug developments.

Keywords

Protein tyrosine phosphatase 1B; Silybum marianum; flavonolignan; isosilybin; silybin.

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