Jia Liwei, Zhou Lei, Zou Shujun, Xu Yang, Meng Xin
School of Pharmacy, Heilongjiang University of Chinese Medicine, No.24 Heping Road, Harbin, 150040, People's Republic of China.
Sci Rep. 2025 Aug 29;15(1):31877. doi: 10.1038/s41598-025-12781-2.
Cytochrome P450 1B1 (CYP1B1) is a heme-containing enzyme involved in procarcinogen activation and estrogen metabolism, contributing to tumor progression. This study investigates the inhibitory effects of proanthocyanidin (PA) on CYP1B1-catalyzed reactions and its underlying mechanisms. Enzyme kinetics revealed that PA exerts mixed-type inhibition with an IC₅₀ of 2.53 ± 0.01 μM. Molecular docking demonstrated that PA binds to key residues (Phe231, Gly329, Ala330, Asn228, Asn265) and the heme cofactor through hydrogen bonding and π-π stacking, interfering with substrate binding and electron transfer. Molecular dynamics simulations over 200 ns confirmed the stability of the PA-CYP1B1 complex. To validate the stability and inhibitory relevance of the simulation results, berberine, a known CYP1B1 inhibitor, was used as a positive control in parallel analyses. In silico ADMET prediction indicated high intestinal absorption and a favorable safety profile, with no significant CYP inhibition or mutagenicity. However, low membrane permeability and multiple drug-likeness violations suggest limited oral bioavailability. These findings support the potential of PA as a natural CYP1B1 inhibitor for cancer prevention and treatment. Further structural optimization or formulation strategies may enhance its pharmacokinetic properties and clinical applicability.
细胞色素P450 1B1(CYP1B1)是一种含血红素的酶,参与前致癌物激活和雌激素代谢,促进肿瘤进展。本研究调查了原花青素(PA)对CYP1B1催化反应的抑制作用及其潜在机制。酶动力学表明,PA发挥混合型抑制作用,IC₅₀为2.53±0.01μM。分子对接表明,PA通过氢键和π-π堆积与关键残基(Phe231、Gly329、Ala330、Asn228、Asn265)和血红素辅因子结合,干扰底物结合和电子转移。超过200纳秒的分子动力学模拟证实了PA-CYP1B1复合物的稳定性。为了验证模拟结果的稳定性和抑制相关性,在平行分析中使用已知的CYP1B1抑制剂小檗碱作为阳性对照。计算机辅助ADMET预测表明,PA具有高肠道吸收和良好的安全性,无明显的CYP抑制或致突变性。然而,低膜通透性和多种类药性质违背表明其口服生物利用度有限。这些发现支持了PA作为一种天然CYP1B1抑制剂在癌症预防和治疗方面的潜力。进一步的结构优化或制剂策略可能会增强其药代动力学性质和临床适用性。