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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Mechanistic insights into the inhibition of prostate specific antigen by beta-lactam class compounds.
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Mechanistic insights into the inhibition of prostate specific antigen by beta-lactam class compounds.

机译:用机械原理洞察β-内酰胺类化合物对前列腺特异性抗原的抑制作用。

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Prostate Specific Antigen (PSA) is a biomarker used in the diagnosis of prostate cancer and to monitor therapeutic response. However, its precise role in prostate carcinogenesis and metastasis remains largely unknown. A number of studies arguing in the favor of an active role of PSA in prostate cancer development and progression have implicated this serine protease in the release and activation of growth factors such as insulin-like growth factor 1 (IGF1) through cleavage of insulin like growth factor binding protein 3 and Transforming Growth Factor beta (TGF-beta) through cleavage of Latent TGF-beta. In contrast, other studies suggest that PSA activity might hinder tumor development and progression. In light of these contradictory findings, efficient inhibitors of PSA are needed for exploring its biological role in tumor development and metastasis. Towards the goal of developing potent inhibitors of PSA, we have explored the molecular mechanism of a series of beta-lactam based compounds on binding to PSA using activity assays, matrix assisted laser desorption ionization with a time-of-flight mass spectrometry, and GOLD docking methodology. The mass spectrometry experiments and the activity assays confirmed the time-dependent and covalent nature of beta-lactam binding. To gain insights on the reaction intermediates at the molecular level, we docked beta-lactam inhibitors to a homology modeled PSA using the GOLD docking program in noncovalent and covalent binding modes. The docking studies elucidated the molecular details of the early noncovalent Michaelis complex, the acyl-enzyme covalent complex, and the nature of conformational reorganization required for the long term stability of the covalent complex. Additionally, the molecular basis for the effect of stereochemistry of the lactam ring on the inhibitory potency was elucidated through docking of beta-lactam enantiomers. As a validation of our docking methodology, two novel enantiomers were synthesized and evaluated for their inhibitory potency using fluorogenic substrate based activity assays. Additionally, cis enantiomers of eight beta-lactam compounds reported in a previous study were docked and their GOLD scores and binding modes were analyzed in order to assess the general applicability of our docking results. The close agreement of our docking results with the experimental data validates the mechanistic insights revealed through the docking studies and paves the way for the design and development of potent and specific inhibitors of PSA.
机译:前列腺特异性抗原(PSA)是用于诊断前列腺癌和监测治疗反应的生物标志物。然而,其在前列腺癌发生和转移中的确切作用仍然未知。许多支持PSA在前列腺癌发展和进程中发挥积极作用的研究都表明,这种丝氨酸蛋白酶通过诸如胰岛素样生长因子的裂解而参与了诸如胰岛素样生长因子1(IGF1)之类的生长因子的释放和活化。潜在的TGF-β的裂解,使TGF-β和TGF-β结合。相反,其他研究表明PSA活性可能会阻碍肿瘤的发展和进程。鉴于这些矛盾的发现,需要有效的PSA抑制剂来探索其在肿瘤发展和转移中的生物学作用。为了开发有效的PSA抑制剂,我们使用活性分析,飞行时间质谱法和基质辅助激光解吸电离和GOLD探索了一系列基于β-内酰胺的化合物与PSA结合的分子机制。对接方法。质谱实验和活性测定证实了β-内酰胺结合的时间依赖性和共价性质。为了在分子水平上深入了解反应中间体,我们使用GOLD对接程序以非共价和共价结合模式将β-内酰胺抑制剂对接至同源性模型化PSA。对接研究阐明了早期非共价Michaelis复合物,酰基-酶共价复合物的分子细节以及共价复合物的长期稳定性所需的构象重组性质。另外,通过β-内酰胺对映体的对接阐明了内酰胺环的立体化学对抑制效能的影响的分子基础。作为我们对接方法的验证,合成了两种新型对映异构体,并使用基于荧光底物的活性分析评估了其抑制能力。此外,对接先前研究中报道的8种β-内酰胺化合物的顺式对映异构体,并分析其GOLD得分和结合方式,以评估我们对接结果的一般适用性。我们的对接结果与实验数据非常吻合,验证了通过对接研究揭示的机理见解,为有效和特定的PSA抑制剂的设计和开发铺平了道路。

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